Files
sdk/pkg/dev_compiler/lib/runtime/dart/async.js
T

5203 lines
195 KiB
JavaScript

var async;
(function(exports) {
'use strict';
// Function _invokeErrorHandler: (Function, Object, StackTrace) → dynamic
function _invokeErrorHandler(errorHandler, error, stackTrace) {
if (dart.is(errorHandler, ZoneBinaryCallback)) {
return dart.dinvokef(errorHandler, error, stackTrace);
} else {
return dart.dinvokef(errorHandler, error);
}
}
// Function _registerErrorHandler: (Function, Zone) → Function
function _registerErrorHandler(errorHandler, zone) {
if (dart.is(errorHandler, ZoneBinaryCallback)) {
return zone.registerBinaryCallback(errorHandler);
} else {
return zone.registerUnaryCallback(dart.as(errorHandler, dart.throw_("Unimplemented type (dynamic) → dynamic")));
}
}
let _getBestStackTrace = Symbol('_getBestStackTrace');
class AsyncError extends core.Object {
AsyncError(error, stackTrace) {
this.error = error;
this.stackTrace = stackTrace;
}
toString() {
return dart.as(dart.dinvoke(this.error, 'toString'), core.String);
}
}
AsyncError[dart.implements] = () => [core.Error];
class _UncaughtAsyncError extends AsyncError {
_UncaughtAsyncError(error, stackTrace) {
super.AsyncError(error, _UncaughtAsyncError[_getBestStackTrace](error, stackTrace));
}
static [_getBestStackTrace](error, stackTrace) {
if (stackTrace != null)
return stackTrace;
if (dart.is(error, core.Error)) {
return dart.as(dart.dload(error, 'stackTrace'), core.StackTrace);
}
return null;
}
toString() {
let result = `Uncaught Error: ${this.error}`;
if (this.stackTrace != null) {
result = `\nStack Trace:\n${this.stackTrace}`;
}
return result;
}
}
let _controller = Symbol('_controller');
let _createSubscription = Symbol('_createSubscription');
let _subscribe = Symbol('_subscribe');
let _onListen = Symbol('_onListen');
let _add = Symbol('_add');
let _closeUnchecked = Symbol('_closeUnchecked');
let _addError = Symbol('_addError');
let _completeError = Symbol('_completeError');
let _complete = Symbol('_complete');
let _sink = Symbol('_sink');
let Stream$ = dart.generic(function(T) {
class Stream extends core.Object {
Stream() {
}
fromFuture(future) {
let controller = new (StreamController$(T))({sync: true});
future.then(dart.as((value) => {
controller[_add](dart.as(value, T));
controller[_closeUnchecked]();
}, dart.throw_("Unimplemented type (T) → dynamic")), {
onError: (error, stackTrace) => {
controller[_addError](error, dart.as(stackTrace, core.StackTrace));
controller[_closeUnchecked]();
}
});
return controller.stream;
}
fromIterable(data) {
return new (_GeneratedStreamImpl$(T))(() => new (_IterablePendingEvents$(T))(data));
}
periodic(period, computation) {
if (computation === void 0)
computation = null;
if (computation == null)
computation = dart.as((i) => null, dart.throw_("Unimplemented type (int) → T"));
let timer = null;
let computationCount = 0;
let controller = null;
let watch = new core.Stopwatch();
// Function sendEvent: () → void
function sendEvent() {
watch.reset();
let data = computation(((x) => computationCount = dart.notNull(x) + 1, x)(computationCount));
controller.add(data);
}
// Function startPeriodicTimer: () → void
function startPeriodicTimer() {
dart.assert(timer == null);
timer = new Timer.periodic(period, (timer) => {
sendEvent();
});
}
controller = new (StreamController$(T))({
sync: true,
onListen: () => {
watch.start();
startPeriodicTimer();
},
onPause: () => {
timer.cancel();
timer = null;
watch.stop();
},
onResume: () => {
dart.assert(timer == null);
let elapsed = watch.elapsed;
watch.start();
timer = new Timer(period['-'](elapsed), () => {
timer = null;
startPeriodicTimer();
sendEvent();
});
},
onCancel: () => {
if (timer != null)
timer.cancel();
timer = null;
}
});
return controller.stream;
}
eventTransformed(source, mapSink) {
return dart.as(new _BoundSinkStream(source, dart.as(mapSink, _SinkMapper)), Stream$(T));
}
get isBroadcast() {
return false;
}
asBroadcastStream(opts) {
let onListen = opts && 'onListen' in opts ? opts.onListen : null;
let onCancel = opts && 'onCancel' in opts ? opts.onCancel : null;
return new (_AsBroadcastStream$(T))(this, dart.as(onListen, dart.throw_("Unimplemented type (StreamSubscription<dynamic>) → void")), dart.as(onCancel, dart.throw_("Unimplemented type (StreamSubscription<dynamic>) → void")));
}
where(test) {
return new (_WhereStream$(T))(this, test);
}
map(convert) {
return new (_MapStream$(T, dynamic))(this, convert);
}
asyncMap(convert) {
let controller = null;
let subscription = null;
// Function onListen: () → void
function onListen() {
let add = controller.add;
dart.assert(dart.notNull(dart.is(controller, _StreamController)) || dart.notNull(dart.is(controller, _BroadcastStreamController)));
let eventSink = controller;
let addError = eventSink[_addError];
subscription = this.listen((event) => {
let newValue = null;
try {
newValue = convert(event);
} catch (e) {
let s = dart.stackTrace(e);
controller.addError(e, s);
return;
}
if (dart.is(newValue, Future)) {
subscription.pause();
dart.dinvoke(dart.dinvoke(newValue, 'then', add, {onError: addError}), 'whenComplete', subscription.resume);
} else {
controller.add(newValue);
}
}, {onError: dart.as(addError, core.Function), onDone: controller.close});
}
if (this.isBroadcast) {
controller = new StreamController.broadcast({
onListen: onListen,
onCancel: () => {
subscription.cancel();
},
sync: true
});
} else {
controller = new StreamController({
onListen: onListen,
onPause: () => {
subscription.pause();
},
onResume: () => {
subscription.resume();
},
onCancel: () => {
subscription.cancel();
},
sync: true
});
}
return controller.stream;
}
asyncExpand(convert) {
let controller = null;
let subscription = null;
// Function onListen: () → void
function onListen() {
dart.assert(dart.notNull(dart.is(controller, _StreamController)) || dart.notNull(dart.is(controller, _BroadcastStreamController)));
let eventSink = controller;
subscription = this.listen((event) => {
let newStream = null;
try {
newStream = convert(event);
} catch (e) {
let s = dart.stackTrace(e);
controller.addError(e, s);
return;
}
if (newStream != null) {
subscription.pause();
controller.addStream(newStream).whenComplete(subscription.resume);
}
}, {onError: dart.as(eventSink[_addError], core.Function), onDone: controller.close});
}
if (this.isBroadcast) {
controller = new StreamController.broadcast({
onListen: onListen,
onCancel: () => {
subscription.cancel();
},
sync: true
});
} else {
controller = new StreamController({
onListen: onListen,
onPause: () => {
subscription.pause();
},
onResume: () => {
subscription.resume();
},
onCancel: () => {
subscription.cancel();
},
sync: true
});
}
return controller.stream;
}
handleError(onError, opts) {
let test = opts && 'test' in opts ? opts.test : null;
return new (_HandleErrorStream$(T))(this, onError, test);
}
expand(convert) {
return new (_ExpandStream$(T, dynamic))(this, convert);
}
pipe(streamConsumer) {
return streamConsumer.addStream(this).then((_) => streamConsumer.close());
}
transform(streamTransformer) {
return streamTransformer.bind(this);
}
reduce(combine) {
let result = new (_Future$(T))();
let seenFirst = false;
let value = null;
let subscription = null;
subscription = this.listen((element) => {
if (seenFirst) {
_runUserCode(() => combine(value, element), (newValue) => {
value = newValue;
}, dart.as(_cancelAndErrorClosure(subscription, result), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
} else {
value = element;
seenFirst = true;
}
}, {
onError: result[_completeError],
onDone: () => {
if (!dart.notNull(seenFirst)) {
try {
throw _internal.IterableElementError.noElement();
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(result, e, s);
}
} else {
result[_complete](value);
}
},
cancelOnError: true
});
return result;
}
fold(initialValue, combine) {
let result = new _Future();
let value = initialValue;
let subscription = null;
subscription = this.listen((element) => {
_runUserCode(() => dart.dinvokef(combine, value, element), (newValue) => {
value = newValue;
}, dart.as(_cancelAndErrorClosure(subscription, result), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
}, {
onError: (e, st) => {
result[_completeError](e, dart.as(st, core.StackTrace));
},
onDone: () => {
result[_complete](value);
},
cancelOnError: true
});
return result;
}
join(separator) {
if (separator === void 0)
separator = "";
let result = new (_Future$(core.String))();
let buffer = new core.StringBuffer();
let subscription = null;
let first = true;
subscription = this.listen((element) => {
if (!dart.notNull(first)) {
buffer.write(separator);
}
first = false;
try {
buffer.write(element);
} catch (e) {
let s = dart.stackTrace(e);
_cancelAndErrorWithReplacement(subscription, result, e, s);
}
}, {
onError: (e) => {
result[_completeError](e);
},
onDone: () => {
result[_complete](buffer.toString());
},
cancelOnError: true
});
return result;
}
contains(needle) {
let future = new (_Future$(core.bool))();
let subscription = null;
subscription = this.listen((element) => {
_runUserCode(() => dart.equals(element, needle), (isMatch) => {
if (isMatch) {
_cancelAndValue(subscription, future, true);
}
}, dart.as(_cancelAndErrorClosure(subscription, future), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
}, {
onError: future[_completeError],
onDone: () => {
future[_complete](false);
},
cancelOnError: true
});
return future;
}
forEach(action) {
let future = new _Future();
let subscription = null;
subscription = this.listen((element) => {
_runUserCode(() => action(element), (_) => {
}, dart.as(_cancelAndErrorClosure(subscription, future), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
}, {
onError: future[_completeError],
onDone: () => {
future[_complete](null);
},
cancelOnError: true
});
return future;
}
every(test) {
let future = new (_Future$(core.bool))();
let subscription = null;
subscription = this.listen((element) => {
_runUserCode(() => test(element), (isMatch) => {
if (!dart.notNull(isMatch)) {
_cancelAndValue(subscription, future, false);
}
}, dart.as(_cancelAndErrorClosure(subscription, future), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
}, {
onError: future[_completeError],
onDone: () => {
future[_complete](true);
},
cancelOnError: true
});
return future;
}
any(test) {
let future = new (_Future$(core.bool))();
let subscription = null;
subscription = this.listen((element) => {
_runUserCode(() => test(element), (isMatch) => {
if (isMatch) {
_cancelAndValue(subscription, future, true);
}
}, dart.as(_cancelAndErrorClosure(subscription, future), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
}, {
onError: future[_completeError],
onDone: () => {
future[_complete](false);
},
cancelOnError: true
});
return future;
}
get length() {
let future = new (_Future$(core.int))();
let count = 0;
this.listen(dart.as((_) => {
count = dart.notNull(count) + 1;
}, dart.throw_("Unimplemented type (T) → void")), {
onError: future[_completeError],
onDone: () => {
future[_complete](count);
},
cancelOnError: true
});
return future;
}
get isEmpty() {
let future = new (_Future$(core.bool))();
let subscription = null;
subscription = this.listen(dart.as((_) => {
_cancelAndValue(subscription, future, false);
}, dart.throw_("Unimplemented type (T) → void")), {
onError: future[_completeError],
onDone: () => {
future[_complete](true);
},
cancelOnError: true
});
return future;
}
toList() {
let result = new core.List$(T).from([]);
let future = new (_Future$(core.List$(T)))();
this.listen((data) => {
result[core.$add](data);
}, {
onError: future[_completeError],
onDone: () => {
future[_complete](result);
},
cancelOnError: true
});
return future;
}
toSet() {
let result = new (core.Set$(T))();
let future = new (_Future$(core.Set$(T)))();
this.listen((data) => {
result.add(data);
}, {
onError: future[_completeError],
onDone: () => {
future[_complete](result);
},
cancelOnError: true
});
return future;
}
drain(futureValue) {
if (futureValue === void 0)
futureValue = null;
return this.listen(null, {cancelOnError: true}).asFuture(futureValue);
}
take(count) {
return dart.as(new _TakeStream(this, count), Stream$(T));
}
takeWhile(test) {
return dart.as(new _TakeWhileStream(this, test), Stream$(T));
}
skip(count) {
return dart.as(new _SkipStream(this, count), Stream$(T));
}
skipWhile(test) {
return dart.as(new _SkipWhileStream(this, test), Stream$(T));
}
distinct(equals) {
if (equals === void 0)
equals = null;
return dart.as(new _DistinctStream(this, equals), Stream$(T));
}
get first() {
let future = new (_Future$(T))();
let subscription = null;
subscription = this.listen((value) => {
_cancelAndValue(subscription, future, value);
}, {
onError: future[_completeError],
onDone: () => {
try {
throw _internal.IterableElementError.noElement();
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(future, e, s);
}
},
cancelOnError: true
});
return future;
}
get last() {
let future = new (_Future$(T))();
let result = null;
let foundResult = false;
let subscription = null;
subscription = this.listen((value) => {
foundResult = true;
result = value;
}, {
onError: future[_completeError],
onDone: () => {
if (foundResult) {
future[_complete](result);
return;
}
try {
throw _internal.IterableElementError.noElement();
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(future, e, s);
}
},
cancelOnError: true
});
return future;
}
get single() {
let future = new (_Future$(T))();
let result = null;
let foundResult = false;
let subscription = null;
subscription = this.listen((value) => {
if (foundResult) {
try {
throw _internal.IterableElementError.tooMany();
} catch (e) {
let s = dart.stackTrace(e);
_cancelAndErrorWithReplacement(subscription, future, e, s);
}
return;
}
foundResult = true;
result = value;
}, {
onError: future[_completeError],
onDone: () => {
if (foundResult) {
future[_complete](result);
return;
}
try {
throw _internal.IterableElementError.noElement();
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(future, e, s);
}
},
cancelOnError: true
});
return future;
}
firstWhere(test, opts) {
let defaultValue = opts && 'defaultValue' in opts ? opts.defaultValue : null;
let future = new _Future();
let subscription = null;
subscription = this.listen((value) => {
_runUserCode(() => test(value), (isMatch) => {
if (isMatch) {
_cancelAndValue(subscription, future, value);
}
}, dart.as(_cancelAndErrorClosure(subscription, future), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
}, {
onError: future[_completeError],
onDone: () => {
if (defaultValue != null) {
_runUserCode(defaultValue, future[_complete], future[_completeError]);
return;
}
try {
throw _internal.IterableElementError.noElement();
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(future, e, s);
}
},
cancelOnError: true
});
return future;
}
lastWhere(test, opts) {
let defaultValue = opts && 'defaultValue' in opts ? opts.defaultValue : null;
let future = new _Future();
let result = null;
let foundResult = false;
let subscription = null;
subscription = this.listen((value) => {
_runUserCode(() => true == test(value), (isMatch) => {
if (isMatch) {
foundResult = true;
result = value;
}
}, dart.as(_cancelAndErrorClosure(subscription, future), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
}, {
onError: future[_completeError],
onDone: () => {
if (foundResult) {
future[_complete](result);
return;
}
if (defaultValue != null) {
_runUserCode(defaultValue, future[_complete], future[_completeError]);
return;
}
try {
throw _internal.IterableElementError.noElement();
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(future, e, s);
}
},
cancelOnError: true
});
return future;
}
singleWhere(test) {
let future = new (_Future$(T))();
let result = null;
let foundResult = false;
let subscription = null;
subscription = this.listen((value) => {
_runUserCode(() => true == test(value), (isMatch) => {
if (isMatch) {
if (foundResult) {
try {
throw _internal.IterableElementError.tooMany();
} catch (e) {
let s = dart.stackTrace(e);
_cancelAndErrorWithReplacement(subscription, future, e, s);
}
return;
}
foundResult = true;
result = value;
}
}, dart.as(_cancelAndErrorClosure(subscription, future), dart.throw_("Unimplemented type (dynamic, StackTrace) → dynamic")));
}, {
onError: future[_completeError],
onDone: () => {
if (foundResult) {
future[_complete](result);
return;
}
try {
throw _internal.IterableElementError.noElement();
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(future, e, s);
}
},
cancelOnError: true
});
return future;
}
elementAt(index) {
if (dart.notNull(!(typeof index == 'number')) || dart.notNull(index) < 0)
throw new core.ArgumentError(index);
let future = new (_Future$(T))();
let subscription = null;
let elementIndex = 0;
subscription = this.listen((value) => {
if (index == elementIndex) {
_cancelAndValue(subscription, future, value);
return;
}
elementIndex = 1;
}, {
onError: future[_completeError],
onDone: (() => {
future[_completeError](new core.RangeError.index(index, this, "index", null, elementIndex));
}).bind(this),
cancelOnError: true
});
return future;
}
timeout(timeLimit, opts) {
let onTimeout = opts && 'onTimeout' in opts ? opts.onTimeout : null;
let controller = null;
let subscription = null;
let timer = null;
let zone = null;
let timeout = null;
// Function onData: (T) → void
function onData(event) {
timer.cancel();
controller.add(event);
timer = zone.createTimer(timeLimit, dart.as(timeout, dart.throw_("Unimplemented type () → void")));
}
// Function onError: (dynamic, StackTrace) → void
function onError(error, stackTrace) {
timer.cancel();
dart.assert(dart.notNull(dart.is(controller, _StreamController)) || dart.notNull(dart.is(controller, _BroadcastStreamController)));
let eventSink = controller;
dart.dinvoke(eventSink, '_addError', error, stackTrace);
timer = zone.createTimer(timeLimit, dart.as(timeout, dart.throw_("Unimplemented type () → void")));
}
// Function onDone: () → void
function onDone() {
timer.cancel();
controller.close();
}
// Function onListen: () → void
function onListen() {
zone = Zone.current;
if (onTimeout == null) {
timeout = () => {
controller.addError(new TimeoutException("No stream event", timeLimit), null);
};
} else {
onTimeout = dart.as(zone.registerUnaryCallback(onTimeout), dart.throw_("Unimplemented type (EventSink<dynamic>) → void"));
let wrapper = new _ControllerEventSinkWrapper(null);
timeout = () => {
wrapper[_sink] = controller;
zone.runUnaryGuarded(onTimeout, wrapper);
wrapper[_sink] = null;
};
}
subscription = this.listen(onData, {onError: onError, onDone: onDone});
timer = zone.createTimer(timeLimit, dart.as(timeout, dart.throw_("Unimplemented type () → void")));
}
// Function onCancel: () → Future<dynamic>
function onCancel() {
timer.cancel();
let result = subscription.cancel();
subscription = null;
return result;
}
controller = this.isBroadcast ? new _SyncBroadcastStreamController(onListen, onCancel) : new _SyncStreamController(onListen, () => {
timer.cancel();
subscription.pause();
}, () => {
subscription.resume();
timer = zone.createTimer(timeLimit, dart.as(timeout, dart.throw_("Unimplemented type () → void")));
}, onCancel);
return controller.stream;
}
}
dart.defineNamedConstructor(Stream, 'fromFuture');
dart.defineNamedConstructor(Stream, 'fromIterable');
dart.defineNamedConstructor(Stream, 'periodic');
dart.defineNamedConstructor(Stream, 'eventTransformed');
return Stream;
});
let Stream = Stream$();
let _StreamImpl$ = dart.generic(function(T) {
class _StreamImpl extends Stream$(T) {
listen(onData, opts) {
let onError = opts && 'onError' in opts ? opts.onError : null;
let onDone = opts && 'onDone' in opts ? opts.onDone : null;
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : null;
cancelOnError = core.identical(true, cancelOnError);
let subscription = this[_createSubscription](onData, onError, onDone, cancelOnError);
this[_onListen](subscription);
return dart.as(subscription, StreamSubscription$(T));
}
[_createSubscription](onData, onError, onDone, cancelOnError) {
return new (_BufferingStreamSubscription$(T))(onData, onError, onDone, cancelOnError);
}
[_onListen](subscription) {}
}
return _StreamImpl;
});
let _StreamImpl = _StreamImpl$();
let _ControllerStream$ = dart.generic(function(T) {
class _ControllerStream extends _StreamImpl$(T) {
_ControllerStream(controller$) {
this[_controller] = controller$;
super._StreamImpl();
}
[_createSubscription](onData, onError, onDone, cancelOnError) {
return this[_controller][_subscribe](onData, onError, onDone, cancelOnError);
}
get hashCode() {
return dart.notNull(this[_controller].hashCode) ^ 892482866;
}
['=='](other) {
if (core.identical(this, other))
return true;
if (!dart.is(other, _ControllerStream))
return false;
let otherStream = dart.as(other, _ControllerStream);
return core.identical(otherStream[_controller], this[_controller]);
}
}
return _ControllerStream;
});
let _ControllerStream = _ControllerStream$();
let _BroadcastStream$ = dart.generic(function(T) {
class _BroadcastStream extends _ControllerStream$(T) {
_BroadcastStream(controller) {
super._ControllerStream(dart.as(controller, _StreamControllerLifecycle$(T)));
}
get isBroadcast() {
return true;
}
}
return _BroadcastStream;
});
let _BroadcastStream = _BroadcastStream$();
let _next = Symbol('_next');
let _previous = Symbol('_previous');
class _BroadcastSubscriptionLink extends core.Object {
_BroadcastSubscriptionLink() {
this[_next] = null;
this[_previous] = null;
}
}
let _eventState = Symbol('_eventState');
let _expectsEvent = Symbol('_expectsEvent');
let _STATE_EVENT_ID = Symbol('_STATE_EVENT_ID');
let _toggleEventId = Symbol('_toggleEventId');
let _isFiring = Symbol('_isFiring');
let _STATE_FIRING = Symbol('_STATE_FIRING');
let _setRemoveAfterFiring = Symbol('_setRemoveAfterFiring');
let _STATE_REMOVE_AFTER_FIRING = Symbol('_STATE_REMOVE_AFTER_FIRING');
let _removeAfterFiring = Symbol('_removeAfterFiring');
let _onPause = Symbol('_onPause');
let _onResume = Symbol('_onResume');
let _onCancel = Symbol('_onCancel');
let _recordCancel = Symbol('_recordCancel');
let _recordPause = Symbol('_recordPause');
let _recordResume = Symbol('_recordResume');
let _zone = Symbol('_zone');
let _state = Symbol('_state');
let _STATE_CANCEL_ON_ERROR = Symbol('_STATE_CANCEL_ON_ERROR');
let _onData = Symbol('_onData');
let _onError = Symbol('_onError');
let _onDone = Symbol('_onDone');
let _cancelFuture = Symbol('_cancelFuture');
let _pending = Symbol('_pending');
let _setPendingEvents = Symbol('_setPendingEvents');
let _STATE_HAS_PENDING = Symbol('_STATE_HAS_PENDING');
let _extractPending = Symbol('_extractPending');
let _isCanceled = Symbol('_isCanceled');
let _isPaused = Symbol('_isPaused');
let _isInputPaused = Symbol('_isInputPaused');
let _STATE_PAUSE_COUNT = Symbol('_STATE_PAUSE_COUNT');
let _STATE_INPUT_PAUSED = Symbol('_STATE_INPUT_PAUSED');
let _inCallback = Symbol('_inCallback');
let _guardCallback = Symbol('_guardCallback');
let _decrementPauseCount = Symbol('_decrementPauseCount');
let _hasPending = Symbol('_hasPending');
let _mayResumeInput = Symbol('_mayResumeInput');
let _STATE_WAIT_FOR_CANCEL = Symbol('_STATE_WAIT_FOR_CANCEL');
let _cancel = Symbol('_cancel');
let _isClosed = Symbol('_isClosed');
let _STATE_CLOSED = Symbol('_STATE_CLOSED');
let _STATE_CANCELED = Symbol('_STATE_CANCELED');
let _waitsForCancel = Symbol('_waitsForCancel');
let _STATE_IN_CALLBACK = Symbol('_STATE_IN_CALLBACK');
let _canFire = Symbol('_canFire');
let _cancelOnError = Symbol('_cancelOnError');
let _incrementPauseCount = Symbol('_incrementPauseCount');
let _sendData = Symbol('_sendData');
let _addPending = Symbol('_addPending');
let _sendError = Symbol('_sendError');
let _close = Symbol('_close');
let _sendDone = Symbol('_sendDone');
let _checkState = Symbol('_checkState');
let _BufferingStreamSubscription$ = dart.generic(function(T) {
class _BufferingStreamSubscription extends core.Object {
_BufferingStreamSubscription(onData, onError, onDone, cancelOnError) {
this[_zone] = Zone.current;
this[_state] = cancelOnError ? _BufferingStreamSubscription[_STATE_CANCEL_ON_ERROR] : 0;
this[_onData] = null;
this[_onError] = null;
this[_onDone] = null;
this[_cancelFuture] = null;
this[_pending] = null;
this.onData(onData);
this.onError(onError);
this.onDone(onDone);
}
[_setPendingEvents](pendingEvents) {
dart.assert(this[_pending] == null);
if (pendingEvents == null)
return;
this[_pending] = pendingEvents;
if (!dart.notNull(pendingEvents.isEmpty)) {
this[_state] = _BufferingStreamSubscription[_STATE_HAS_PENDING];
this[_pending].schedule(this);
}
}
[_extractPending]() {
dart.assert(this[_isCanceled]);
let events = this[_pending];
this[_pending] = null;
return events;
}
onData(handleData) {
if (handleData == null)
handleData = dart.as(_nullDataHandler, dart.throw_("Unimplemented type (T) → void"));
this[_onData] = dart.as(this[_zone].registerUnaryCallback(handleData), _DataHandler);
}
onError(handleError) {
if (handleError == null)
handleError = _nullErrorHandler;
this[_onError] = _registerErrorHandler(handleError, this[_zone]);
}
onDone(handleDone) {
if (handleDone == null)
handleDone = _nullDoneHandler;
this[_onDone] = this[_zone].registerCallback(handleDone);
}
pause(resumeSignal) {
if (resumeSignal === void 0)
resumeSignal = null;
if (this[_isCanceled])
return;
let wasPaused = this[_isPaused];
let wasInputPaused = this[_isInputPaused];
this[_state] = dart.notNull(this[_state]) + dart.notNull(_BufferingStreamSubscription[_STATE_PAUSE_COUNT]) | dart.notNull(_BufferingStreamSubscription[_STATE_INPUT_PAUSED]);
if (resumeSignal != null)
resumeSignal.whenComplete(this.resume);
if (!dart.notNull(wasPaused) && dart.notNull(this[_pending] != null))
this[_pending].cancelSchedule();
if (!dart.notNull(wasInputPaused) && !dart.notNull(this[_inCallback]))
this[_guardCallback](this[_onPause]);
}
resume() {
if (this[_isCanceled])
return;
if (this[_isPaused]) {
this[_decrementPauseCount]();
if (!dart.notNull(this[_isPaused])) {
if (dart.notNull(this[_hasPending]) && !dart.notNull(this[_pending].isEmpty)) {
this[_pending].schedule(this);
} else {
dart.assert(this[_mayResumeInput]);
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_INPUT_PAUSED]);
if (!dart.notNull(this[_inCallback]))
this[_guardCallback](this[_onResume]);
}
}
}
}
cancel() {
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_WAIT_FOR_CANCEL]);
if (this[_isCanceled])
return this[_cancelFuture];
this[_cancel]();
return this[_cancelFuture];
}
asFuture(futureValue) {
if (futureValue === void 0)
futureValue = null;
let result = new (_Future$(T))();
this[_onDone] = () => {
result[_complete](futureValue);
};
this[_onError] = ((error, stackTrace) => {
this.cancel();
result[_completeError](error, dart.as(stackTrace, core.StackTrace));
}).bind(this);
return result;
}
get [_isInputPaused]() {
return (dart.notNull(this[_state]) & dart.notNull(_BufferingStreamSubscription[_STATE_INPUT_PAUSED])) != 0;
}
get [_isClosed]() {
return (dart.notNull(this[_state]) & dart.notNull(_BufferingStreamSubscription[_STATE_CLOSED])) != 0;
}
get [_isCanceled]() {
return (dart.notNull(this[_state]) & dart.notNull(_BufferingStreamSubscription[_STATE_CANCELED])) != 0;
}
get [_waitsForCancel]() {
return (dart.notNull(this[_state]) & dart.notNull(_BufferingStreamSubscription[_STATE_WAIT_FOR_CANCEL])) != 0;
}
get [_inCallback]() {
return (dart.notNull(this[_state]) & dart.notNull(_BufferingStreamSubscription[_STATE_IN_CALLBACK])) != 0;
}
get [_hasPending]() {
return (dart.notNull(this[_state]) & dart.notNull(_BufferingStreamSubscription[_STATE_HAS_PENDING])) != 0;
}
get [_isPaused]() {
return dart.notNull(this[_state]) >= dart.notNull(_BufferingStreamSubscription[_STATE_PAUSE_COUNT]);
}
get [_canFire]() {
return dart.notNull(this[_state]) < dart.notNull(_BufferingStreamSubscription[_STATE_IN_CALLBACK]);
}
get [_mayResumeInput]() {
return !dart.notNull(this[_isPaused]) && (dart.notNull(this[_pending] == null) || dart.notNull(this[_pending].isEmpty));
}
get [_cancelOnError]() {
return (dart.notNull(this[_state]) & dart.notNull(_BufferingStreamSubscription[_STATE_CANCEL_ON_ERROR])) != 0;
}
get isPaused() {
return this[_isPaused];
}
[_cancel]() {
this[_state] = _BufferingStreamSubscription[_STATE_CANCELED];
if (this[_hasPending]) {
this[_pending].cancelSchedule();
}
if (!dart.notNull(this[_inCallback]))
this[_pending] = null;
this[_cancelFuture] = this[_onCancel]();
}
[_incrementPauseCount]() {
this[_state] = dart.notNull(this[_state]) + dart.notNull(_BufferingStreamSubscription[_STATE_PAUSE_COUNT]) | dart.notNull(_BufferingStreamSubscription[_STATE_INPUT_PAUSED]);
}
[_decrementPauseCount]() {
dart.assert(this[_isPaused]);
this[_state] = _BufferingStreamSubscription[_STATE_PAUSE_COUNT];
}
[_add](data) {
dart.assert(!dart.notNull(this[_isClosed]));
if (this[_isCanceled])
return;
if (this[_canFire]) {
this[_sendData](data);
} else {
this[_addPending](new _DelayedData(data));
}
}
[_addError](error, stackTrace) {
if (this[_isCanceled])
return;
if (this[_canFire]) {
this[_sendError](error, stackTrace);
} else {
this[_addPending](new _DelayedError(error, stackTrace));
}
}
[_close]() {
dart.assert(!dart.notNull(this[_isClosed]));
if (this[_isCanceled])
return;
this[_state] = _BufferingStreamSubscription[_STATE_CLOSED];
if (this[_canFire]) {
this[_sendDone]();
} else {
this[_addPending](new _DelayedDone());
}
}
[_onPause]() {
dart.assert(this[_isInputPaused]);
}
[_onResume]() {
dart.assert(!dart.notNull(this[_isInputPaused]));
}
[_onCancel]() {
dart.assert(this[_isCanceled]);
return null;
}
[_addPending](event) {
let pending = dart.as(this[_pending], _StreamImplEvents);
if (this[_pending] == null)
pending = this[_pending] = new _StreamImplEvents();
pending.add(event);
if (!dart.notNull(this[_hasPending])) {
this[_state] = _BufferingStreamSubscription[_STATE_HAS_PENDING];
if (!dart.notNull(this[_isPaused])) {
this[_pending].schedule(this);
}
}
}
[_sendData](data) {
dart.assert(!dart.notNull(this[_isCanceled]));
dart.assert(!dart.notNull(this[_isPaused]));
dart.assert(!dart.notNull(this[_inCallback]));
let wasInputPaused = this[_isInputPaused];
this[_state] = _BufferingStreamSubscription[_STATE_IN_CALLBACK];
this[_zone].runUnaryGuarded(this[_onData], data);
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_IN_CALLBACK]);
this[_checkState](wasInputPaused);
}
[_sendError](error, stackTrace) {
dart.assert(!dart.notNull(this[_isCanceled]));
dart.assert(!dart.notNull(this[_isPaused]));
dart.assert(!dart.notNull(this[_inCallback]));
let wasInputPaused = this[_isInputPaused];
// Function sendError: () → void
function sendError() {
if (dart.notNull(this[_isCanceled]) && !dart.notNull(this[_waitsForCancel]))
return;
this[_state] = _BufferingStreamSubscription[_STATE_IN_CALLBACK];
if (dart.is(this[_onError], ZoneBinaryCallback)) {
this[_zone].runBinaryGuarded(dart.as(this[_onError], dart.throw_("Unimplemented type (dynamic, dynamic) → dynamic")), error, stackTrace);
} else {
this[_zone].runUnaryGuarded(dart.as(this[_onError], dart.throw_("Unimplemented type (dynamic) → dynamic")), error);
}
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_IN_CALLBACK]);
}
if (this[_cancelOnError]) {
this[_state] = _BufferingStreamSubscription[_STATE_WAIT_FOR_CANCEL];
this[_cancel]();
if (dart.is(this[_cancelFuture], Future)) {
this[_cancelFuture].whenComplete(sendError);
} else {
sendError();
}
} else {
sendError();
this[_checkState](wasInputPaused);
}
}
[_sendDone]() {
dart.assert(!dart.notNull(this[_isCanceled]));
dart.assert(!dart.notNull(this[_isPaused]));
dart.assert(!dart.notNull(this[_inCallback]));
// Function sendDone: () → void
function sendDone() {
if (!dart.notNull(this[_waitsForCancel]))
return;
this[_state] = dart.notNull(_BufferingStreamSubscription[_STATE_CANCELED]) | dart.notNull(_BufferingStreamSubscription[_STATE_CLOSED]) | dart.notNull(_BufferingStreamSubscription[_STATE_IN_CALLBACK]);
this[_zone].runGuarded(this[_onDone]);
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_IN_CALLBACK]);
}
this[_cancel]();
this[_state] = _BufferingStreamSubscription[_STATE_WAIT_FOR_CANCEL];
if (dart.is(this[_cancelFuture], Future)) {
this[_cancelFuture].whenComplete(sendDone);
} else {
sendDone();
}
}
[_guardCallback](callback) {
dart.assert(!dart.notNull(this[_inCallback]));
let wasInputPaused = this[_isInputPaused];
this[_state] = _BufferingStreamSubscription[_STATE_IN_CALLBACK];
dart.dinvokef(callback);
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_IN_CALLBACK]);
this[_checkState](wasInputPaused);
}
[_checkState](wasInputPaused) {
dart.assert(!dart.notNull(this[_inCallback]));
if (dart.notNull(this[_hasPending]) && dart.notNull(this[_pending].isEmpty)) {
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_HAS_PENDING]);
if (dart.notNull(this[_isInputPaused]) && dart.notNull(this[_mayResumeInput])) {
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_INPUT_PAUSED]);
}
}
while (true) {
if (this[_isCanceled]) {
this[_pending] = null;
return;
}
let isInputPaused = this[_isInputPaused];
if (wasInputPaused == isInputPaused)
break;
this[_state] = _BufferingStreamSubscription[_STATE_IN_CALLBACK];
if (isInputPaused) {
this[_onPause]();
} else {
this[_onResume]();
}
this[_state] = ~dart.notNull(_BufferingStreamSubscription[_STATE_IN_CALLBACK]);
wasInputPaused = isInputPaused;
}
if (dart.notNull(this[_hasPending]) && !dart.notNull(this[_isPaused])) {
this[_pending].schedule(this);
}
}
}
_BufferingStreamSubscription[dart.implements] = () => [StreamSubscription$(T), _EventSink$(T), _EventDispatch$(T)];
_BufferingStreamSubscription._STATE_CANCEL_ON_ERROR = 1;
_BufferingStreamSubscription._STATE_CLOSED = 2;
_BufferingStreamSubscription._STATE_INPUT_PAUSED = 4;
_BufferingStreamSubscription._STATE_CANCELED = 8;
_BufferingStreamSubscription._STATE_WAIT_FOR_CANCEL = 16;
_BufferingStreamSubscription._STATE_IN_CALLBACK = 32;
_BufferingStreamSubscription._STATE_HAS_PENDING = 64;
_BufferingStreamSubscription._STATE_PAUSE_COUNT = 128;
_BufferingStreamSubscription._STATE_PAUSE_COUNT_SHIFT = 7;
return _BufferingStreamSubscription;
});
let _BufferingStreamSubscription = _BufferingStreamSubscription$();
let _ControllerSubscription$ = dart.generic(function(T) {
class _ControllerSubscription extends _BufferingStreamSubscription$(T) {
_ControllerSubscription(controller$, onData, onError, onDone, cancelOnError) {
this[_controller] = controller$;
super._BufferingStreamSubscription(onData, onError, onDone, cancelOnError);
}
[_onCancel]() {
return this[_controller][_recordCancel](this);
}
[_onPause]() {
this[_controller][_recordPause](this);
}
[_onResume]() {
this[_controller][_recordResume](this);
}
}
return _ControllerSubscription;
});
let _ControllerSubscription = _ControllerSubscription$();
let _BroadcastSubscription$ = dart.generic(function(T) {
class _BroadcastSubscription extends _ControllerSubscription$(T) {
_BroadcastSubscription(controller, onData, onError, onDone, cancelOnError) {
this[_eventState] = null;
this[_next] = null;
this[_previous] = null;
super._ControllerSubscription(dart.as(controller, _StreamControllerLifecycle$(T)), onData, onError, onDone, cancelOnError);
this[_next] = this[_previous] = this;
}
get [_controller]() {
return dart.as(super[_controller], _BroadcastStreamController);
}
[_expectsEvent](eventId) {
return (dart.notNull(this[_eventState]) & dart.notNull(_BroadcastSubscription[_STATE_EVENT_ID])) == eventId;
}
[_toggleEventId]() {
this[_eventState] = _BroadcastSubscription[_STATE_EVENT_ID];
}
get [_isFiring]() {
return (dart.notNull(this[_eventState]) & dart.notNull(_BroadcastSubscription[_STATE_FIRING])) != 0;
}
[_setRemoveAfterFiring]() {
dart.assert(this[_isFiring]);
this[_eventState] = _BroadcastSubscription[_STATE_REMOVE_AFTER_FIRING];
}
get [_removeAfterFiring]() {
return (dart.notNull(this[_eventState]) & dart.notNull(_BroadcastSubscription[_STATE_REMOVE_AFTER_FIRING])) != 0;
}
[_onPause]() {}
[_onResume]() {}
}
_BroadcastSubscription[dart.implements] = () => [_BroadcastSubscriptionLink];
_BroadcastSubscription._STATE_EVENT_ID = 1;
_BroadcastSubscription._STATE_FIRING = 2;
_BroadcastSubscription._STATE_REMOVE_AFTER_FIRING = 4;
return _BroadcastSubscription;
});
let _BroadcastSubscription = _BroadcastSubscription$();
let _STATE_INITIAL = Symbol('_STATE_INITIAL');
let _addStreamState = Symbol('_addStreamState');
let _doneFuture = Symbol('_doneFuture');
let _isEmpty = Symbol('_isEmpty');
let _hasOneListener = Symbol('_hasOneListener');
let _isAddingStream = Symbol('_isAddingStream');
let _STATE_ADDSTREAM = Symbol('_STATE_ADDSTREAM');
let _mayAddEvent = Symbol('_mayAddEvent');
let _ensureDoneFuture = Symbol('_ensureDoneFuture');
let _addListener = Symbol('_addListener');
let _removeListener = Symbol('_removeListener');
let _callOnCancel = Symbol('_callOnCancel');
let _addEventError = Symbol('_addEventError');
let _forEachListener = Symbol('_forEachListener');
let _mayComplete = Symbol('_mayComplete');
let _asyncComplete = Symbol('_asyncComplete');
let _BroadcastStreamController$ = dart.generic(function(T) {
class _BroadcastStreamController extends core.Object {
_BroadcastStreamController(onListen$, onCancel$) {
this[_onListen] = onListen$;
this[_onCancel] = onCancel$;
this[_state] = _BroadcastStreamController[_STATE_INITIAL];
this[_next] = null;
this[_previous] = null;
this[_addStreamState] = null;
this[_doneFuture] = null;
this[_next] = this[_previous] = this;
}
get stream() {
return new (_BroadcastStream$(T))(this);
}
get sink() {
return new (_StreamSinkWrapper$(T))(this);
}
get isClosed() {
return (dart.notNull(this[_state]) & dart.notNull(_BroadcastStreamController[_STATE_CLOSED])) != 0;
}
get isPaused() {
return false;
}
get hasListener() {
return !dart.notNull(this[_isEmpty]);
}
get [_hasOneListener]() {
dart.assert(!dart.notNull(this[_isEmpty]));
return core.identical(this[_next][_next], this);
}
get [_isFiring]() {
return (dart.notNull(this[_state]) & dart.notNull(_BroadcastStreamController[_STATE_FIRING])) != 0;
}
get [_isAddingStream]() {
return (dart.notNull(this[_state]) & dart.notNull(_BroadcastStreamController[_STATE_ADDSTREAM])) != 0;
}
get [_mayAddEvent]() {
return dart.notNull(this[_state]) < dart.notNull(_BroadcastStreamController[_STATE_CLOSED]);
}
[_ensureDoneFuture]() {
if (this[_doneFuture] != null)
return this[_doneFuture];
return this[_doneFuture] = new _Future();
}
get [_isEmpty]() {
return core.identical(this[_next], this);
}
[_addListener](subscription) {
dart.assert(core.identical(subscription[_next], subscription));
subscription[_previous] = this[_previous];
subscription[_next] = this;
this[_previous][_next] = subscription;
this[_previous] = subscription;
subscription[_eventState] = dart.notNull(this[_state]) & dart.notNull(_BroadcastStreamController[_STATE_EVENT_ID]);
}
[_removeListener](subscription) {
dart.assert(core.identical(subscription[_controller], this));
dart.assert(!dart.notNull(core.identical(subscription[_next], subscription)));
let previous = subscription[_previous];
let next = subscription[_next];
previous[_next] = next;
next[_previous] = previous;
subscription[_next] = subscription[_previous] = subscription;
}
[_subscribe](onData, onError, onDone, cancelOnError) {
if (this.isClosed) {
if (onDone == null)
onDone = _nullDoneHandler;
return new (_DoneStreamSubscription$(T))(onDone);
}
let subscription = new (_BroadcastSubscription$(T))(this, onData, onError, onDone, cancelOnError);
this[_addListener](dart.as(subscription, _BroadcastSubscription$(T)));
if (core.identical(this[_next], this[_previous])) {
_runGuarded(this[_onListen]);
}
return dart.as(subscription, StreamSubscription$(T));
}
[_recordCancel](subscription) {
if (core.identical(subscription[_next], subscription))
return null;
dart.assert(!dart.notNull(core.identical(subscription[_next], subscription)));
if (subscription[_isFiring]) {
subscription[_setRemoveAfterFiring]();
} else {
dart.assert(!dart.notNull(core.identical(subscription[_next], subscription)));
this[_removeListener](subscription);
if (!dart.notNull(this[_isFiring]) && dart.notNull(this[_isEmpty])) {
this[_callOnCancel]();
}
}
return null;
}
[_recordPause](subscription) {}
[_recordResume](subscription) {}
[_addEventError]() {
if (this.isClosed) {
return new core.StateError("Cannot add new events after calling close");
}
dart.assert(this[_isAddingStream]);
return new core.StateError("Cannot add new events while doing an addStream");
}
add(data) {
if (!dart.notNull(this[_mayAddEvent]))
throw this[_addEventError]();
this[_sendData](data);
}
addError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
error = _nonNullError(error);
if (!dart.notNull(this[_mayAddEvent]))
throw this[_addEventError]();
let replacement = Zone.current.errorCallback(error, stackTrace);
if (replacement != null) {
error = _nonNullError(replacement.error);
stackTrace = replacement.stackTrace;
}
this[_sendError](error, stackTrace);
}
close() {
if (this.isClosed) {
dart.assert(this[_doneFuture] != null);
return this[_doneFuture];
}
if (!dart.notNull(this[_mayAddEvent]))
throw this[_addEventError]();
this[_state] = _BroadcastStreamController[_STATE_CLOSED];
let doneFuture = this[_ensureDoneFuture]();
this[_sendDone]();
return doneFuture;
}
get done() {
return this[_ensureDoneFuture]();
}
addStream(stream, opts) {
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : true;
if (!dart.notNull(this[_mayAddEvent]))
throw this[_addEventError]();
this[_state] = _BroadcastStreamController[_STATE_ADDSTREAM];
this[_addStreamState] = dart.as(new _AddStreamState(this, stream, cancelOnError), _AddStreamState$(T));
return this[_addStreamState].addStreamFuture;
}
[_add](data) {
this[_sendData](data);
}
[_addError](error, stackTrace) {
this[_sendError](error, stackTrace);
}
[_close]() {
dart.assert(this[_isAddingStream]);
let addState = this[_addStreamState];
this[_addStreamState] = null;
this[_state] = ~dart.notNull(_BroadcastStreamController[_STATE_ADDSTREAM]);
addState.complete();
}
[_forEachListener](action) {
if (this[_isFiring]) {
throw new core.StateError("Cannot fire new event. Controller is already firing an event");
}
if (this[_isEmpty])
return;
let id = dart.notNull(this[_state]) & dart.notNull(_BroadcastStreamController[_STATE_EVENT_ID]);
this[_state] = dart.notNull(_BroadcastStreamController[_STATE_EVENT_ID]) | dart.notNull(_BroadcastStreamController[_STATE_FIRING]);
let link = this[_next];
while (!dart.notNull(core.identical(link, this))) {
let subscription = dart.as(link, _BroadcastSubscription$(T));
if (subscription[_expectsEvent](id)) {
subscription[_eventState] = _BroadcastSubscription[_STATE_FIRING];
action(subscription);
subscription[_toggleEventId]();
link = subscription[_next];
if (subscription[_removeAfterFiring]) {
this[_removeListener](subscription);
}
subscription[_eventState] = ~dart.notNull(_BroadcastSubscription[_STATE_FIRING]);
} else {
link = subscription[_next];
}
}
this[_state] = ~dart.notNull(_BroadcastStreamController[_STATE_FIRING]);
if (this[_isEmpty]) {
this[_callOnCancel]();
}
}
[_callOnCancel]() {
dart.assert(this[_isEmpty]);
if (dart.notNull(this.isClosed) && dart.notNull(this[_doneFuture][_mayComplete])) {
this[_doneFuture][_asyncComplete](null);
}
_runGuarded(this[_onCancel]);
}
}
_BroadcastStreamController[dart.implements] = () => [StreamController$(T), _StreamControllerLifecycle$(T), _BroadcastSubscriptionLink, _EventSink$(T), _EventDispatch$(T)];
_BroadcastStreamController._STATE_INITIAL = 0;
_BroadcastStreamController._STATE_EVENT_ID = 1;
_BroadcastStreamController._STATE_FIRING = 2;
_BroadcastStreamController._STATE_CLOSED = 4;
_BroadcastStreamController._STATE_ADDSTREAM = 8;
return _BroadcastStreamController;
});
let _BroadcastStreamController = _BroadcastStreamController$();
let _SyncBroadcastStreamController$ = dart.generic(function(T) {
class _SyncBroadcastStreamController extends _BroadcastStreamController$(T) {
_SyncBroadcastStreamController(onListen, onCancel) {
super._BroadcastStreamController(onListen, onCancel);
}
[_sendData](data) {
if (this[_isEmpty])
return;
if (this[_hasOneListener]) {
this[_state] = _BroadcastStreamController[_STATE_FIRING];
let subscription = dart.as(this[_next], _BroadcastSubscription);
subscription[_add](data);
this[_state] = ~dart.notNull(_BroadcastStreamController[_STATE_FIRING]);
if (this[_isEmpty]) {
this[_callOnCancel]();
}
return;
}
this[_forEachListener]((subscription) => {
subscription[_add](data);
});
}
[_sendError](error, stackTrace) {
if (this[_isEmpty])
return;
this[_forEachListener]((subscription) => {
subscription[_addError](error, stackTrace);
});
}
[_sendDone]() {
if (!dart.notNull(this[_isEmpty])) {
this[_forEachListener](dart.as((subscription) => {
subscription[_close]();
}, dart.throw_("Unimplemented type (_BufferingStreamSubscription<T>) → void")));
} else {
dart.assert(this[_doneFuture] != null);
dart.assert(this[_doneFuture][_mayComplete]);
this[_doneFuture][_asyncComplete](null);
}
}
}
return _SyncBroadcastStreamController;
});
let _SyncBroadcastStreamController = _SyncBroadcastStreamController$();
let _AsyncBroadcastStreamController$ = dart.generic(function(T) {
class _AsyncBroadcastStreamController extends _BroadcastStreamController$(T) {
_AsyncBroadcastStreamController(onListen, onCancel) {
super._BroadcastStreamController(onListen, onCancel);
}
[_sendData](data) {
for (let link = this[_next]; !dart.notNull(core.identical(link, this)); link = link[_next]) {
let subscription = dart.as(link, _BroadcastSubscription$(T));
subscription[_addPending](new _DelayedData(data));
}
}
[_sendError](error, stackTrace) {
for (let link = this[_next]; !dart.notNull(core.identical(link, this)); link = link[_next]) {
let subscription = dart.as(link, _BroadcastSubscription$(T));
subscription[_addPending](new _DelayedError(error, stackTrace));
}
}
[_sendDone]() {
if (!dart.notNull(this[_isEmpty])) {
for (let link = this[_next]; !dart.notNull(core.identical(link, this)); link = link[_next]) {
let subscription = dart.as(link, _BroadcastSubscription$(T));
subscription[_addPending](new _DelayedDone());
}
} else {
dart.assert(this[_doneFuture] != null);
dart.assert(this[_doneFuture][_mayComplete]);
this[_doneFuture][_asyncComplete](null);
}
}
}
return _AsyncBroadcastStreamController;
});
let _AsyncBroadcastStreamController = _AsyncBroadcastStreamController$();
let _addPendingEvent = Symbol('_addPendingEvent');
let _AsBroadcastStreamController$ = dart.generic(function(T) {
class _AsBroadcastStreamController extends _SyncBroadcastStreamController$(T) {
_AsBroadcastStreamController(onListen, onCancel) {
this[_pending] = null;
super._SyncBroadcastStreamController(onListen, onCancel);
}
get [_hasPending]() {
return dart.notNull(this[_pending] != null) && !dart.notNull(this[_pending].isEmpty);
}
[_addPendingEvent](event) {
if (this[_pending] == null) {
this[_pending] = new _StreamImplEvents();
}
this[_pending].add(event);
}
add(data) {
if (!dart.notNull(this.isClosed) && dart.notNull(this[_isFiring])) {
this[_addPendingEvent](new (_DelayedData$(T))(data));
return;
}
super.add(data);
while (this[_hasPending]) {
this[_pending].handleNext(this);
}
}
addError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
if (!dart.notNull(this.isClosed) && dart.notNull(this[_isFiring])) {
this[_addPendingEvent](new _DelayedError(error, stackTrace));
return;
}
if (!dart.notNull(this[_mayAddEvent]))
throw this[_addEventError]();
this[_sendError](error, stackTrace);
while (this[_hasPending]) {
this[_pending].handleNext(this);
}
}
close() {
if (!dart.notNull(this.isClosed) && dart.notNull(this[_isFiring])) {
this[_addPendingEvent](new _DelayedDone());
this[_state] = _BroadcastStreamController[_STATE_CLOSED];
return super.done;
}
let result = super.close();
dart.assert(!dart.notNull(this[_hasPending]));
return result;
}
[_callOnCancel]() {
if (this[_hasPending]) {
this[_pending].clear();
this[_pending] = null;
}
super[_callOnCancel]();
}
}
_AsBroadcastStreamController[dart.implements] = () => [_EventDispatch$(T)];
return _AsBroadcastStreamController;
});
let _AsBroadcastStreamController = _AsBroadcastStreamController$();
let _pauseCount = Symbol('_pauseCount');
let _resume = Symbol('_resume');
let _DoneSubscription$ = dart.generic(function(T) {
class _DoneSubscription extends core.Object {
_DoneSubscription() {
this[_pauseCount] = 0;
}
onData(handleData) {}
onError(handleError) {}
onDone(handleDone) {}
pause(resumeSignal) {
if (resumeSignal === void 0)
resumeSignal = null;
if (resumeSignal != null)
resumeSignal.then(this[_resume]);
this[_pauseCount] = dart.notNull(this[_pauseCount]) + 1;
}
resume() {
this[_resume](null);
}
[_resume](_) {
if (dart.notNull(this[_pauseCount]) > 0)
this[_pauseCount] = dart.notNull(this[_pauseCount]) - 1;
}
cancel() {
return new _Future.immediate(null);
}
get isPaused() {
return dart.notNull(this[_pauseCount]) > 0;
}
asFuture(value) {
if (value === void 0)
value = null;
return new _Future();
}
}
_DoneSubscription[dart.implements] = () => [StreamSubscription$(T)];
return _DoneSubscription;
});
let _DoneSubscription = _DoneSubscription$();
class DeferredLibrary extends core.Object {
DeferredLibrary(libraryName, opts) {
let uri = opts && 'uri' in opts ? opts.uri : null;
this.libraryName = libraryName;
this.uri = uri;
}
load() {
throw 'DeferredLibrary not supported. ' + 'please use the `import "lib.dart" deferred as lib` syntax.';
}
}
let _s = Symbol('_s');
class DeferredLoadException extends core.Object {
DeferredLoadException(s$) {
this[_s] = s$;
}
toString() {
return `DeferredLoadException: '${this[_s]}'`;
}
}
DeferredLoadException[dart.implements] = () => [core.Exception];
let _completeWithValue = Symbol('_completeWithValue');
let Future$ = dart.generic(function(T) {
class Future extends core.Object {
Future(computation) {
let result = new (_Future$(T))();
Timer.run(() => {
try {
result[_complete](computation());
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(result, e, s);
}
});
return dart.as(result, Future$(T));
}
microtask(computation) {
let result = new (_Future$(T))();
scheduleMicrotask(() => {
try {
result[_complete](computation());
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(result, e, s);
}
});
return dart.as(result, Future$(T));
}
sync(computation) {
try {
let result = computation();
return new Future$(T).value(result);
} catch (error) {
let stackTrace = dart.stackTrace(error);
return new Future$(T).error(error, stackTrace);
}
}
value(value) {
if (value === void 0)
value = null;
return new _Future$(T).immediate(value);
}
error(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
error = _nonNullError(error);
if (!dart.notNull(core.identical(Zone.current, _ROOT_ZONE))) {
let replacement = Zone.current.errorCallback(error, stackTrace);
if (replacement != null) {
error = _nonNullError(replacement.error);
stackTrace = replacement.stackTrace;
}
}
return new _Future$(T).immediateError(error, stackTrace);
}
delayed(duration, computation) {
if (computation === void 0)
computation = null;
let result = new (_Future$(T))();
new Timer(duration, () => {
try {
result[_complete](computation == null ? null : computation());
} catch (e) {
let s = dart.stackTrace(e);
_completeWithErrorCallback(result, e, s);
}
});
return dart.as(result, Future$(T));
}
static wait(futures, opts) {
let eagerError = opts && 'eagerError' in opts ? opts.eagerError : false;
let cleanUp = opts && 'cleanUp' in opts ? opts.cleanUp : null;
let result = new (_Future$(core.List))();
let values = null;
let remaining = 0;
let error = null;
let stackTrace = null;
// Function handleError: (dynamic, dynamic) → void
function handleError(theError, theStackTrace) {
remaining = dart.notNull(remaining) - 1;
if (values != null) {
if (cleanUp != null) {
for (let value of values) {
if (value != null) {
new Future.sync(() => {
dart.dinvokef(cleanUp, value);
});
}
}
}
values = null;
if (remaining == 0 || dart.notNull(eagerError)) {
result[_completeError](theError, dart.as(theStackTrace, core.StackTrace));
} else {
error = theError;
stackTrace = dart.as(theStackTrace, core.StackTrace);
}
} else if (remaining == 0 && !dart.notNull(eagerError)) {
result[_completeError](error, stackTrace);
}
}
for (let future of futures) {
let pos = ((x) => remaining = dart.notNull(x) + 1, x)(remaining);
future.then((value) => {
remaining = dart.notNull(remaining) - 1;
if (values != null) {
values[core.$set](pos, value);
if (remaining == 0) {
result[_completeWithValue](values);
}
} else {
if (dart.notNull(cleanUp != null) && dart.notNull(value != null)) {
new Future.sync(() => {
dart.dinvokef(cleanUp, value);
});
}
if (remaining == 0 && !dart.notNull(eagerError)) {
result[_completeError](error, stackTrace);
}
}
}, {onError: handleError});
}
if (remaining == 0) {
return dart.as(new Future.value(/* Unimplemented const */new core.List.from([])), Future$(core.List));
}
values = new core.List(remaining);
return result;
}
static forEach(input, f) {
let iterator = input[core.$iterator];
return Future.doWhile(() => {
if (!dart.notNull(iterator.moveNext()))
return false;
return new Future.sync(() => dart.dinvokef(f, iterator.current)).then((_) => true);
});
}
static doWhile(f) {
let doneSignal = new _Future();
let nextIteration = null;
nextIteration = Zone.current.bindUnaryCallback((keepGoing) => {
if (keepGoing) {
new Future.sync(f).then(dart.as(nextIteration, dart.throw_("Unimplemented type (dynamic) → dynamic")), {onError: doneSignal[_completeError]});
} else {
doneSignal[_complete](null);
}
}, {runGuarded: true});
dart.dinvokef(nextIteration, true);
return doneSignal;
}
}
dart.defineNamedConstructor(Future, 'microtask');
dart.defineNamedConstructor(Future, 'sync');
dart.defineNamedConstructor(Future, 'value');
dart.defineNamedConstructor(Future, 'error');
dart.defineNamedConstructor(Future, 'delayed');
dart.defineLazyProperties(Future, {
get _nullFuture() {
return new Future.value(null);
}
});
return Future;
});
let Future = Future$();
class TimeoutException extends core.Object {
TimeoutException(message, duration) {
if (duration === void 0)
duration = null;
this.message = message;
this.duration = duration;
}
toString() {
let result = "TimeoutException";
if (this.duration != null)
result = `TimeoutException after ${this.duration}`;
if (this.message != null)
result = `${result}: ${this.message}`;
return result;
}
}
TimeoutException[dart.implements] = () => [core.Exception];
let Completer$ = dart.generic(function(T) {
class Completer extends core.Object {
Completer() {
return new (_AsyncCompleter$(T))();
}
sync() {
return new (_SyncCompleter$(T))();
}
}
dart.defineNamedConstructor(Completer, 'sync');
return Completer;
});
let Completer = Completer$();
// Function _completeWithErrorCallback: (_Future<dynamic>, dynamic, dynamic) → void
function _completeWithErrorCallback(result, error, stackTrace) {
let replacement = Zone.current.errorCallback(error, dart.as(stackTrace, core.StackTrace));
if (replacement != null) {
error = _nonNullError(replacement.error);
stackTrace = replacement.stackTrace;
}
result[_completeError](error, dart.as(stackTrace, core.StackTrace));
}
// Function _nonNullError: (Object) → Object
function _nonNullError(error) {
return error != null ? error : new core.NullThrownError();
}
let _FutureOnValue$ = dart.generic(function(T) {
class _FutureOnValue extends core.Function {}
return _FutureOnValue;
});
let _FutureOnValue = _FutureOnValue$();
class _FutureErrorTest extends core.Function {}
class _FutureAction extends core.Function {}
let _Completer$ = dart.generic(function(T) {
class _Completer extends core.Object {
_Completer() {
this.future = new (_Future$(T))();
}
completeError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
error = _nonNullError(error);
if (!dart.notNull(this.future[_mayComplete]))
throw new core.StateError("Future already completed");
let replacement = Zone.current.errorCallback(error, stackTrace);
if (replacement != null) {
error = _nonNullError(replacement.error);
stackTrace = replacement.stackTrace;
}
this[_completeError](error, stackTrace);
}
get isCompleted() {
return !dart.notNull(this.future[_mayComplete]);
}
}
_Completer[dart.implements] = () => [Completer$(T)];
return _Completer;
});
let _Completer = _Completer$();
let _asyncCompleteError = Symbol('_asyncCompleteError');
let _AsyncCompleter$ = dart.generic(function(T) {
class _AsyncCompleter extends _Completer$(T) {
complete(value) {
if (value === void 0)
value = null;
if (!dart.notNull(this.future[_mayComplete]))
throw new core.StateError("Future already completed");
this.future[_asyncComplete](value);
}
[_completeError](error, stackTrace) {
this.future[_asyncCompleteError](error, stackTrace);
}
}
return _AsyncCompleter;
});
let _AsyncCompleter = _AsyncCompleter$();
let _SyncCompleter$ = dart.generic(function(T) {
class _SyncCompleter extends _Completer$(T) {
complete(value) {
if (value === void 0)
value = null;
if (!dart.notNull(this.future[_mayComplete]))
throw new core.StateError("Future already completed");
this.future[_complete](value);
}
[_completeError](error, stackTrace) {
this.future[_completeError](error, stackTrace);
}
}
return _SyncCompleter;
});
let _SyncCompleter = _SyncCompleter$();
let _nextListener = Symbol('_nextListener');
let _onValue = Symbol('_onValue');
let _errorTest = Symbol('_errorTest');
let _whenCompleteAction = Symbol('_whenCompleteAction');
class _FutureListener extends core.Object {
then(result, onValue, errorCallback) {
this.result = result;
this.callback = onValue;
this.errorCallback = errorCallback;
this.state = errorCallback == null ? _FutureListener.STATE_THEN : _FutureListener.STATE_THEN_ONERROR;
this[_nextListener] = null;
}
catchError(result, errorCallback, test) {
this.result = result;
this.errorCallback = errorCallback;
this.callback = test;
this.state = test == null ? _FutureListener.STATE_CATCHERROR : _FutureListener.STATE_CATCHERROR_TEST;
this[_nextListener] = null;
}
whenComplete(result, onComplete) {
this.result = result;
this.callback = onComplete;
this.errorCallback = null;
this.state = _FutureListener.STATE_WHENCOMPLETE;
this[_nextListener] = null;
}
chain(result) {
this.result = result;
this.callback = null;
this.errorCallback = null;
this.state = _FutureListener.STATE_CHAIN;
this[_nextListener] = null;
}
get [_zone]() {
return this.result[_zone];
}
get handlesValue() {
return (dart.notNull(this.state) & dart.notNull(_FutureListener.MASK_VALUE)) != 0;
}
get handlesError() {
return (dart.notNull(this.state) & dart.notNull(_FutureListener.MASK_ERROR)) != 0;
}
get hasErrorTest() {
return this.state == _FutureListener.STATE_CATCHERROR_TEST;
}
get handlesComplete() {
return this.state == _FutureListener.STATE_WHENCOMPLETE;
}
get [_onValue]() {
dart.assert(this.handlesValue);
return dart.as(this.callback, _FutureOnValue);
}
get [_onError]() {
return this.errorCallback;
}
get [_errorTest]() {
dart.assert(this.hasErrorTest);
return dart.as(this.callback, _FutureErrorTest);
}
get [_whenCompleteAction]() {
dart.assert(this.handlesComplete);
return dart.as(this.callback, _FutureAction);
}
}
dart.defineNamedConstructor(_FutureListener, 'then');
dart.defineNamedConstructor(_FutureListener, 'catchError');
dart.defineNamedConstructor(_FutureListener, 'whenComplete');
dart.defineNamedConstructor(_FutureListener, 'chain');
_FutureListener.MASK_VALUE = 1;
_FutureListener.MASK_ERROR = 2;
_FutureListener.MASK_TEST_ERROR = 4;
_FutureListener.MASK_WHENCOMPLETE = 8;
_FutureListener.STATE_CHAIN = 0;
_FutureListener.STATE_THEN = _FutureListener.MASK_VALUE;
_FutureListener.STATE_THEN_ONERROR = dart.notNull(_FutureListener.MASK_VALUE) | dart.notNull(_FutureListener.MASK_ERROR);
_FutureListener.STATE_CATCHERROR = _FutureListener.MASK_ERROR;
_FutureListener.STATE_CATCHERROR_TEST = dart.notNull(_FutureListener.MASK_ERROR) | dart.notNull(_FutureListener.MASK_TEST_ERROR);
_FutureListener.STATE_WHENCOMPLETE = _FutureListener.MASK_WHENCOMPLETE;
let _INCOMPLETE = Symbol('_INCOMPLETE');
let _resultOrListeners = Symbol('_resultOrListeners');
let _isChained = Symbol('_isChained');
let _CHAINED = Symbol('_CHAINED');
let _isComplete = Symbol('_isComplete');
let _VALUE = Symbol('_VALUE');
let _hasValue = Symbol('_hasValue');
let _hasError = Symbol('_hasError');
let _ERROR = Symbol('_ERROR');
let _markPendingCompletion = Symbol('_markPendingCompletion');
let _PENDING_COMPLETE = Symbol('_PENDING_COMPLETE');
let _value = Symbol('_value');
let _error = Symbol('_error');
let _setValue = Symbol('_setValue');
let _setErrorObject = Symbol('_setErrorObject');
let _setError = Symbol('_setError');
let _propagateToListeners = Symbol('_propagateToListeners');
let _removeListeners = Symbol('_removeListeners');
let _chainForeignFuture = Symbol('_chainForeignFuture');
let _chainCoreFuture = Symbol('_chainCoreFuture');
let _enter = Symbol('_enter');
let _leave = Symbol('_leave');
let _Future$ = dart.generic(function(T) {
class _Future extends core.Object {
_Future() {
this[_zone] = Zone.current;
this[_state] = _Future[_INCOMPLETE];
this[_resultOrListeners] = null;
}
immediate(value) {
this[_zone] = Zone.current;
this[_state] = _Future[_INCOMPLETE];
this[_resultOrListeners] = null;
this[_asyncComplete](value);
}
immediateError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
this[_zone] = Zone.current;
this[_state] = _Future[_INCOMPLETE];
this[_resultOrListeners] = null;
this[_asyncCompleteError](error, stackTrace);
}
get [_mayComplete]() {
return this[_state] == _Future[_INCOMPLETE];
}
get [_isChained]() {
return this[_state] == _Future[_CHAINED];
}
get [_isComplete]() {
return dart.notNull(this[_state]) >= dart.notNull(_Future[_VALUE]);
}
get [_hasValue]() {
return this[_state] == _Future[_VALUE];
}
get [_hasError]() {
return this[_state] == _Future[_ERROR];
}
set [_isChained](value) {
if (value) {
dart.assert(!dart.notNull(this[_isComplete]));
this[_state] = _Future[_CHAINED];
} else {
dart.assert(this[_isChained]);
this[_state] = _Future[_INCOMPLETE];
}
}
then(f, opts) {
let onError = opts && 'onError' in opts ? opts.onError : null;
let result = new _Future();
if (!dart.notNull(core.identical(result[_zone], _ROOT_ZONE))) {
f = dart.as(result[_zone].registerUnaryCallback(f), dart.throw_("Unimplemented type (T) → dynamic"));
if (onError != null) {
onError = _registerErrorHandler(onError, result[_zone]);
}
}
this[_addListener](new _FutureListener.then(result, f, onError));
return result;
}
catchError(onError, opts) {
let test = opts && 'test' in opts ? opts.test : null;
let result = new _Future();
if (!dart.notNull(core.identical(result[_zone], _ROOT_ZONE))) {
onError = _registerErrorHandler(onError, result[_zone]);
if (test != null)
test = dart.as(result[_zone].registerUnaryCallback(test), dart.throw_("Unimplemented type (dynamic) → bool"));
}
this[_addListener](new _FutureListener.catchError(result, onError, test));
return result;
}
whenComplete(action) {
let result = new (_Future$(T))();
if (!dart.notNull(core.identical(result[_zone], _ROOT_ZONE))) {
action = result[_zone].registerCallback(action);
}
this[_addListener](new _FutureListener.whenComplete(result, action));
return dart.as(result, Future$(T));
}
asStream() {
return dart.as(new Stream.fromFuture(this), Stream$(T));
}
[_markPendingCompletion]() {
if (!dart.notNull(this[_mayComplete]))
throw new core.StateError("Future already completed");
this[_state] = _Future[_PENDING_COMPLETE];
}
get [_value]() {
dart.assert(dart.notNull(this[_isComplete]) && dart.notNull(this[_hasValue]));
return dart.as(this[_resultOrListeners], T);
}
get [_error]() {
dart.assert(dart.notNull(this[_isComplete]) && dart.notNull(this[_hasError]));
return dart.as(this[_resultOrListeners], AsyncError);
}
[_setValue](value) {
dart.assert(!dart.notNull(this[_isComplete]));
this[_state] = _Future[_VALUE];
this[_resultOrListeners] = value;
}
[_setErrorObject](error) {
dart.assert(!dart.notNull(this[_isComplete]));
this[_state] = _Future[_ERROR];
this[_resultOrListeners] = error;
}
[_setError](error, stackTrace) {
this[_setErrorObject](new AsyncError(error, stackTrace));
}
[_addListener](listener) {
dart.assert(listener[_nextListener] == null);
if (this[_isComplete]) {
this[_zone].scheduleMicrotask((() => {
_Future[_propagateToListeners](this, listener);
}).bind(this));
} else {
listener[_nextListener] = dart.as(this[_resultOrListeners], _FutureListener);
this[_resultOrListeners] = listener;
}
}
[_removeListeners]() {
dart.assert(!dart.notNull(this[_isComplete]));
let current = dart.as(this[_resultOrListeners], _FutureListener);
this[_resultOrListeners] = null;
let prev = null;
while (current != null) {
let next = current[_nextListener];
current[_nextListener] = prev;
prev = current;
current = next;
}
return prev;
}
static [_chainForeignFuture](source, target) {
dart.assert(!dart.notNull(target[_isComplete]));
dart.assert(!dart.is(source, _Future));
target[_isChained] = true;
source.then((value) => {
dart.assert(target[_isChained]);
target[_completeWithValue](value);
}, {
onError: (error, stackTrace) => {
if (stackTrace === void 0)
stackTrace = null;
dart.assert(target[_isChained]);
target[_completeError](error, dart.as(stackTrace, core.StackTrace));
}
});
}
static [_chainCoreFuture](source, target) {
dart.assert(!dart.notNull(target[_isComplete]));
dart.assert(dart.is(source, _Future));
target[_isChained] = true;
let listener = new _FutureListener.chain(target);
if (source[_isComplete]) {
_Future[_propagateToListeners](source, listener);
} else {
source[_addListener](listener);
}
}
[_complete](value) {
dart.assert(!dart.notNull(this[_isComplete]));
if (dart.is(value, Future)) {
if (dart.is(value, _Future)) {
_Future[_chainCoreFuture](dart.as(value, _Future), this);
} else {
_Future[_chainForeignFuture](dart.as(value, Future), this);
}
} else {
let listeners = this[_removeListeners]();
this[_setValue](dart.as(value, T));
_Future[_propagateToListeners](this, listeners);
}
}
[_completeWithValue](value) {
dart.assert(!dart.notNull(this[_isComplete]));
dart.assert(!dart.is(value, Future));
let listeners = this[_removeListeners]();
this[_setValue](dart.as(value, T));
_Future[_propagateToListeners](this, listeners);
}
[_completeError](error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
dart.assert(!dart.notNull(this[_isComplete]));
let listeners = this[_removeListeners]();
this[_setError](error, stackTrace);
_Future[_propagateToListeners](this, listeners);
}
[_asyncComplete](value) {
dart.assert(!dart.notNull(this[_isComplete]));
if (value == null) {
} else if (dart.is(value, Future)) {
let typedFuture = dart.as(value, Future$(T));
if (dart.is(typedFuture, _Future)) {
let coreFuture = dart.as(typedFuture, _Future$(T));
if (dart.notNull(coreFuture[_isComplete]) && dart.notNull(coreFuture[_hasError])) {
this[_markPendingCompletion]();
this[_zone].scheduleMicrotask((() => {
_Future[_chainCoreFuture](coreFuture, this);
}).bind(this));
} else {
_Future[_chainCoreFuture](coreFuture, this);
}
} else {
_Future[_chainForeignFuture](typedFuture, this);
}
return;
} else {
let typedValue = dart.as(value, T);
}
this[_markPendingCompletion]();
this[_zone].scheduleMicrotask((() => {
this[_completeWithValue](value);
}).bind(this));
}
[_asyncCompleteError](error, stackTrace) {
dart.assert(!dart.notNull(this[_isComplete]));
this[_markPendingCompletion]();
this[_zone].scheduleMicrotask((() => {
this[_completeError](error, stackTrace);
}).bind(this));
}
static [_propagateToListeners](source, listeners) {
while (true) {
dart.assert(source[_isComplete]);
let hasError = source[_hasError];
if (listeners == null) {
if (hasError) {
let asyncError = source[_error];
source[_zone].handleUncaughtError(asyncError.error, asyncError.stackTrace);
}
return;
}
while (listeners[_nextListener] != null) {
let listener = listeners;
listeners = listener[_nextListener];
listener[_nextListener] = null;
_Future[_propagateToListeners](source, listener);
}
let listener = listeners;
let listenerHasValue = true;
let sourceValue = hasError ? null : source[_value];
let listenerValueOrError = sourceValue;
let isPropagationAborted = false;
if (dart.notNull(hasError) || dart.notNull(listener.handlesValue) || dart.notNull(listener.handlesComplete)) {
let zone = listener[_zone];
if (dart.notNull(hasError) && !dart.notNull(source[_zone].inSameErrorZone(zone))) {
let asyncError = source[_error];
source[_zone].handleUncaughtError(asyncError.error, asyncError.stackTrace);
return;
}
let oldZone = null;
if (!dart.notNull(core.identical(Zone.current, zone))) {
oldZone = Zone[_enter](zone);
}
// Function handleValueCallback: () → bool
function handleValueCallback() {
try {
listenerValueOrError = zone.runUnary(listener[_onValue], sourceValue);
return true;
} catch (e) {
let s = dart.stackTrace(e);
listenerValueOrError = new AsyncError(e, s);
return false;
}
}
// Function handleError: () → void
function handleError() {
let asyncError = source[_error];
let matchesTest = true;
if (listener.hasErrorTest) {
let test = listener[_errorTest];
try {
matchesTest = dart.as(zone.runUnary(test, asyncError.error), core.bool);
} catch (e) {
let s = dart.stackTrace(e);
listenerValueOrError = core.identical(asyncError.error, e) ? asyncError : new AsyncError(e, s);
listenerHasValue = false;
return;
}
}
let errorCallback = listener[_onError];
if (dart.notNull(matchesTest) && dart.notNull(errorCallback != null)) {
try {
if (dart.is(errorCallback, ZoneBinaryCallback)) {
listenerValueOrError = zone.runBinary(errorCallback, asyncError.error, asyncError.stackTrace);
} else {
listenerValueOrError = zone.runUnary(dart.as(errorCallback, dart.throw_("Unimplemented type (dynamic) → dynamic")), asyncError.error);
}
} catch (e) {
let s = dart.stackTrace(e);
listenerValueOrError = core.identical(asyncError.error, e) ? asyncError : new AsyncError(e, s);
listenerHasValue = false;
return;
}
listenerHasValue = true;
} else {
listenerValueOrError = asyncError;
listenerHasValue = false;
}
}
// Function handleWhenCompleteCallback: () → void
function handleWhenCompleteCallback() {
let completeResult = null;
try {
completeResult = zone.run(listener[_whenCompleteAction]);
} catch (e) {
let s = dart.stackTrace(e);
if (dart.notNull(hasError) && dart.notNull(core.identical(source[_error].error, e))) {
listenerValueOrError = source[_error];
} else {
listenerValueOrError = new AsyncError(e, s);
}
listenerHasValue = false;
return;
}
if (dart.is(completeResult, Future)) {
let result = listener.result;
result[_isChained] = true;
isPropagationAborted = true;
dart.dinvoke(completeResult, 'then', (ignored) => {
_Future[_propagateToListeners](source, new _FutureListener.chain(result));
}, {
onError: (error, stackTrace) => {
if (stackTrace === void 0)
stackTrace = null;
if (!dart.is(completeResult, _Future)) {
completeResult = new _Future();
dart.dinvoke(completeResult, '_setError', error, stackTrace);
}
_Future[_propagateToListeners](dart.as(completeResult, _Future), new _FutureListener.chain(result));
}
});
}
}
if (!dart.notNull(hasError)) {
if (listener.handlesValue) {
listenerHasValue = handleValueCallback();
}
} else {
handleError();
}
if (listener.handlesComplete) {
handleWhenCompleteCallback();
}
if (oldZone != null)
Zone[_leave](oldZone);
if (isPropagationAborted)
return;
if (dart.notNull(listenerHasValue) && !dart.notNull(core.identical(sourceValue, listenerValueOrError)) && dart.notNull(dart.is(listenerValueOrError, Future))) {
let chainSource = dart.as(listenerValueOrError, Future);
let result = listener.result;
if (dart.is(chainSource, _Future)) {
if (chainSource[_isComplete]) {
result[_isChained] = true;
source = chainSource;
listeners = new _FutureListener.chain(result);
continue;
} else {
_Future[_chainCoreFuture](chainSource, result);
}
} else {
_Future[_chainForeignFuture](chainSource, result);
}
return;
}
}
let result = listener.result;
listeners = result[_removeListeners]();
if (listenerHasValue) {
result[_setValue](listenerValueOrError);
} else {
let asyncError = dart.as(listenerValueOrError, AsyncError);
result[_setErrorObject](asyncError);
}
source = result;
}
}
timeout(timeLimit, opts) {
let onTimeout = opts && 'onTimeout' in opts ? opts.onTimeout : null;
if (this[_isComplete])
return new _Future.immediate(this);
let result = new _Future();
let timer = null;
if (onTimeout == null) {
timer = new Timer(timeLimit, () => {
result[_completeError](new TimeoutException("Future not completed", timeLimit));
});
} else {
let zone = Zone.current;
onTimeout = zone.registerCallback(onTimeout);
timer = new Timer(timeLimit, () => {
try {
result[_complete](zone.run(onTimeout));
} catch (e) {
let s = dart.stackTrace(e);
result[_completeError](e, s);
}
});
}
this.then((v) => {
if (timer.isActive) {
timer.cancel();
result[_completeWithValue](v);
}
}, {
onError: (e, s) => {
if (timer.isActive) {
timer.cancel();
result[_completeError](e, dart.as(s, core.StackTrace));
}
}
});
return result;
}
}
_Future[dart.implements] = () => [Future$(T)];
dart.defineNamedConstructor(_Future, 'immediate');
dart.defineNamedConstructor(_Future, 'immediateError');
_Future._INCOMPLETE = 0;
_Future._PENDING_COMPLETE = 1;
_Future._CHAINED = 2;
_Future._VALUE = 4;
_Future._ERROR = 8;
return _Future;
});
let _Future = _Future$();
class _AsyncCallback extends core.Function {}
class _AsyncCallbackEntry extends core.Object {
_AsyncCallbackEntry(callback) {
this.callback = callback;
this.next = null;
}
}
exports._nextCallback = null;
exports._lastCallback = null;
exports._lastPriorityCallback = null;
exports._isInCallbackLoop = false;
// Function _asyncRunCallbackLoop: () → void
function _asyncRunCallbackLoop() {
while (exports._nextCallback != null) {
exports._lastPriorityCallback = null;
let entry = exports._nextCallback;
exports._nextCallback = entry.next;
if (exports._nextCallback == null)
exports._lastCallback = null;
entry.callback();
}
}
let _scheduleImmediate = Symbol('_scheduleImmediate');
// Function _asyncRunCallback: () → void
function _asyncRunCallback() {
exports._isInCallbackLoop = true;
try {
_asyncRunCallbackLoop();
} finally {
exports._lastPriorityCallback = null;
exports._isInCallbackLoop = false;
if (exports._nextCallback != null)
_AsyncRun[_scheduleImmediate](_asyncRunCallback);
}
}
// Function _scheduleAsyncCallback: (dynamic) → void
function _scheduleAsyncCallback(callback) {
if (exports._nextCallback == null) {
exports._nextCallback = exports._lastCallback = new _AsyncCallbackEntry(dart.as(callback, _AsyncCallback));
if (!dart.notNull(exports._isInCallbackLoop)) {
_AsyncRun[_scheduleImmediate](_asyncRunCallback);
}
} else {
let newEntry = new _AsyncCallbackEntry(dart.as(callback, _AsyncCallback));
exports._lastCallback.next = newEntry;
exports._lastCallback = newEntry;
}
}
// Function _schedulePriorityAsyncCallback: (dynamic) → void
function _schedulePriorityAsyncCallback(callback) {
let entry = new _AsyncCallbackEntry(dart.as(callback, _AsyncCallback));
if (exports._nextCallback == null) {
_scheduleAsyncCallback(callback);
exports._lastPriorityCallback = exports._lastCallback;
} else if (exports._lastPriorityCallback == null) {
entry.next = exports._nextCallback;
exports._nextCallback = exports._lastPriorityCallback = entry;
} else {
entry.next = exports._lastPriorityCallback.next;
exports._lastPriorityCallback.next = entry;
exports._lastPriorityCallback = entry;
if (entry.next == null) {
exports._lastCallback = entry;
}
}
}
// Function scheduleMicrotask: (() → void) → void
function scheduleMicrotask(callback) {
if (core.identical(_ROOT_ZONE, Zone.current)) {
_rootScheduleMicrotask(null, null, _ROOT_ZONE, callback);
return;
}
Zone.current.scheduleMicrotask(Zone.current.bindCallback(callback, {runGuarded: true}));
}
let _initializeScheduleImmediate = Symbol('_initializeScheduleImmediate');
let _scheduleImmediateJsOverride = Symbol('_scheduleImmediateJsOverride');
let _scheduleImmediateWithSetImmediate = Symbol('_scheduleImmediateWithSetImmediate');
let _scheduleImmediateWithTimer = Symbol('_scheduleImmediateWithTimer');
let _createTimer = Symbol('_createTimer');
class _AsyncRun extends core.Object {
static [_scheduleImmediate](callback) {
dart.dinvokef(_AsyncRun.scheduleImmediateClosure, callback);
}
static [_initializeScheduleImmediate]() {
_js_helper.requiresPreamble();
if (self.scheduleImmediate != null) {
return _AsyncRun[_scheduleImmediateJsOverride];
}
if (dart.notNull(self.MutationObserver != null) && dart.notNull(self.document != null)) {
let div = self.document.createElement("div");
let span = self.document.createElement("span");
let storedCallback = null;
// Function internalCallback: (dynamic) → dynamic
function internalCallback(_) {
_isolate_helper.leaveJsAsync();
let f = storedCallback;
storedCallback = null;
dart.dinvokef(f);
}
;
let observer = new self.MutationObserver(_js_helper.convertDartClosureToJS(internalCallback, 1));
observer.observe(div, {childList: true});
return (callback) => {
dart.assert(storedCallback == null);
_isolate_helper.enterJsAsync();
storedCallback = callback;
div.firstChild ? div.removeChild(span) : div.appendChild(span);
};
} else if (self.setImmediate != null) {
return _AsyncRun[_scheduleImmediateWithSetImmediate];
}
return _AsyncRun[_scheduleImmediateWithTimer];
}
static [_scheduleImmediateJsOverride](callback) {
// Function internalCallback: () → dynamic
function internalCallback() {
_isolate_helper.leaveJsAsync();
callback();
}
;
_isolate_helper.enterJsAsync();
self.scheduleImmediate(_js_helper.convertDartClosureToJS(internalCallback, 0));
}
static [_scheduleImmediateWithSetImmediate](callback) {
// Function internalCallback: () → dynamic
function internalCallback() {
_isolate_helper.leaveJsAsync();
callback();
}
;
_isolate_helper.enterJsAsync();
self.setImmediate(_js_helper.convertDartClosureToJS(internalCallback, 0));
}
static [_scheduleImmediateWithTimer](callback) {
Timer[_createTimer](core.Duration.ZERO, callback);
}
}
dart.defineLazyProperties(_AsyncRun, {
get scheduleImmediateClosure() {
return _AsyncRun[_initializeScheduleImmediate]();
}
});
let StreamSubscription$ = dart.generic(function(T) {
class StreamSubscription extends core.Object {}
return StreamSubscription;
});
let StreamSubscription = StreamSubscription$();
let EventSink$ = dart.generic(function(T) {
class EventSink extends core.Object {}
EventSink[dart.implements] = () => [core.Sink$(T)];
return EventSink;
});
let EventSink = EventSink$();
let _stream = Symbol('_stream');
let StreamView$ = dart.generic(function(T) {
class StreamView extends Stream$(T) {
StreamView(stream$) {
this[_stream] = stream$;
super.Stream();
}
get isBroadcast() {
return this[_stream].isBroadcast;
}
asBroadcastStream(opts) {
let onListen = opts && 'onListen' in opts ? opts.onListen : null;
let onCancel = opts && 'onCancel' in opts ? opts.onCancel : null;
return this[_stream].asBroadcastStream({onListen: onListen, onCancel: onCancel});
}
listen(onData, opts) {
let onError = opts && 'onError' in opts ? opts.onError : null;
let onDone = opts && 'onDone' in opts ? opts.onDone : null;
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : null;
return this[_stream].listen(onData, {onError: onError, onDone: onDone, cancelOnError: cancelOnError});
}
}
return StreamView;
});
let StreamView = StreamView$();
let StreamConsumer$ = dart.generic(function(S) {
class StreamConsumer extends core.Object {}
return StreamConsumer;
});
let StreamConsumer = StreamConsumer$();
let StreamSink$ = dart.generic(function(S) {
class StreamSink extends core.Object {}
StreamSink[dart.implements] = () => [StreamConsumer$(S), EventSink$(S)];
return StreamSink;
});
let StreamSink = StreamSink$();
let StreamTransformer$ = dart.generic(function(S, T) {
class StreamTransformer extends core.Object {
StreamTransformer(transformer) {
return new _StreamSubscriptionTransformer(transformer);
}
fromHandlers(opts) {
return new _StreamHandlerTransformer(opts);
}
}
dart.defineNamedConstructor(StreamTransformer, 'fromHandlers');
return StreamTransformer;
});
let StreamTransformer = StreamTransformer$();
let StreamIterator$ = dart.generic(function(T) {
class StreamIterator extends core.Object {
StreamIterator(stream) {
return new (_StreamIteratorImpl$(T))(stream);
}
}
return StreamIterator;
});
let StreamIterator = StreamIterator$();
let _ControllerEventSinkWrapper$ = dart.generic(function(T) {
class _ControllerEventSinkWrapper extends core.Object {
_ControllerEventSinkWrapper(sink$) {
this[_sink] = sink$;
}
add(data) {
this[_sink].add(data);
}
addError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
this[_sink].addError(error, stackTrace);
}
close() {
this[_sink].close();
}
}
_ControllerEventSinkWrapper[dart.implements] = () => [EventSink$(T)];
return _ControllerEventSinkWrapper;
});
let _ControllerEventSinkWrapper = _ControllerEventSinkWrapper$();
let StreamController$ = dart.generic(function(T) {
class StreamController extends core.Object {
StreamController(opts) {
let onListen = opts && 'onListen' in opts ? opts.onListen : null;
let onPause = opts && 'onPause' in opts ? opts.onPause : null;
let onResume = opts && 'onResume' in opts ? opts.onResume : null;
let onCancel = opts && 'onCancel' in opts ? opts.onCancel : null;
let sync = opts && 'sync' in opts ? opts.sync : false;
if (dart.notNull(onListen == null) && dart.notNull(onPause == null) && dart.notNull(onResume == null) && dart.notNull(onCancel == null)) {
return dart.as(sync ? new _NoCallbackSyncStreamController() : new _NoCallbackAsyncStreamController(), StreamController$(T));
}
return sync ? new (_SyncStreamController$(T))(onListen, onPause, onResume, onCancel) : new (_AsyncStreamController$(T))(onListen, onPause, onResume, onCancel);
}
broadcast(opts) {
let onListen = opts && 'onListen' in opts ? opts.onListen : null;
let onCancel = opts && 'onCancel' in opts ? opts.onCancel : null;
let sync = opts && 'sync' in opts ? opts.sync : false;
return sync ? new (_SyncBroadcastStreamController$(T))(onListen, onCancel) : new (_AsyncBroadcastStreamController$(T))(onListen, onCancel);
}
}
StreamController[dart.implements] = () => [StreamSink$(T)];
dart.defineNamedConstructor(StreamController, 'broadcast');
return StreamController;
});
let StreamController = StreamController$();
let _StreamControllerLifecycle$ = dart.generic(function(T) {
class _StreamControllerLifecycle extends core.Object {
[_recordPause](subscription) {}
[_recordResume](subscription) {}
[_recordCancel](subscription) {
return null;
}
}
return _StreamControllerLifecycle;
});
let _StreamControllerLifecycle = _StreamControllerLifecycle$();
let _varData = Symbol('_varData');
let _STATE_SUBSCRIBED = Symbol('_STATE_SUBSCRIBED');
let _isInitialState = Symbol('_isInitialState');
let _STATE_SUBSCRIPTION_MASK = Symbol('_STATE_SUBSCRIPTION_MASK');
let _subscription = Symbol('_subscription');
let _pendingEvents = Symbol('_pendingEvents');
let _ensurePendingEvents = Symbol('_ensurePendingEvents');
let _badEventState = Symbol('_badEventState');
let _nullFuture = Symbol('_nullFuture');
let _StreamController$ = dart.generic(function(T) {
class _StreamController extends core.Object {
_StreamController() {
this[_varData] = null;
this[_state] = _StreamController[_STATE_INITIAL];
this[_doneFuture] = null;
}
get stream() {
return dart.as(new _ControllerStream(this), Stream$(T));
}
get sink() {
return new (_StreamSinkWrapper$(T))(this);
}
get [_isCanceled]() {
return (dart.notNull(this[_state]) & dart.notNull(_StreamController[_STATE_CANCELED])) != 0;
}
get hasListener() {
return (dart.notNull(this[_state]) & dart.notNull(_StreamController[_STATE_SUBSCRIBED])) != 0;
}
get [_isInitialState]() {
return (dart.notNull(this[_state]) & dart.notNull(_StreamController[_STATE_SUBSCRIPTION_MASK])) == _StreamController[_STATE_INITIAL];
}
get isClosed() {
return (dart.notNull(this[_state]) & dart.notNull(_StreamController[_STATE_CLOSED])) != 0;
}
get isPaused() {
return this.hasListener ? this[_subscription][_isInputPaused] : !dart.notNull(this[_isCanceled]);
}
get [_isAddingStream]() {
return (dart.notNull(this[_state]) & dart.notNull(_StreamController[_STATE_ADDSTREAM])) != 0;
}
get [_mayAddEvent]() {
return dart.notNull(this[_state]) < dart.notNull(_StreamController[_STATE_CLOSED]);
}
get [_pendingEvents]() {
dart.assert(this[_isInitialState]);
if (!dart.notNull(this[_isAddingStream])) {
return dart.as(this[_varData], _PendingEvents);
}
let state = dart.as(this[_varData], _StreamControllerAddStreamState);
return dart.as(state.varData, _PendingEvents);
}
[_ensurePendingEvents]() {
dart.assert(this[_isInitialState]);
if (!dart.notNull(this[_isAddingStream])) {
if (this[_varData] == null)
this[_varData] = new _StreamImplEvents();
return dart.as(this[_varData], _StreamImplEvents);
}
let state = dart.as(this[_varData], _StreamControllerAddStreamState);
if (state.varData == null)
state.varData = new _StreamImplEvents();
return dart.as(state.varData, _StreamImplEvents);
}
get [_subscription]() {
dart.assert(this.hasListener);
if (this[_isAddingStream]) {
let addState = dart.as(this[_varData], _StreamControllerAddStreamState);
return dart.as(addState.varData, _ControllerSubscription);
}
return dart.as(this[_varData], _ControllerSubscription);
}
[_badEventState]() {
if (this.isClosed) {
return new core.StateError("Cannot add event after closing");
}
dart.assert(this[_isAddingStream]);
return new core.StateError("Cannot add event while adding a stream");
}
addStream(source, opts) {
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : true;
if (!dart.notNull(this[_mayAddEvent]))
throw this[_badEventState]();
if (this[_isCanceled])
return new _Future.immediate(null);
let addState = new _StreamControllerAddStreamState(this, this[_varData], source, cancelOnError);
this[_varData] = addState;
this[_state] = _StreamController[_STATE_ADDSTREAM];
return addState.addStreamFuture;
}
get done() {
return this[_ensureDoneFuture]();
}
[_ensureDoneFuture]() {
if (this[_doneFuture] == null) {
this[_doneFuture] = this[_isCanceled] ? Future[_nullFuture] : new _Future();
}
return this[_doneFuture];
}
add(value) {
if (!dart.notNull(this[_mayAddEvent]))
throw this[_badEventState]();
this[_add](value);
}
addError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
error = _nonNullError(error);
if (!dart.notNull(this[_mayAddEvent]))
throw this[_badEventState]();
let replacement = Zone.current.errorCallback(error, stackTrace);
if (replacement != null) {
error = _nonNullError(replacement.error);
stackTrace = replacement.stackTrace;
}
this[_addError](error, stackTrace);
}
close() {
if (this.isClosed) {
return this[_ensureDoneFuture]();
}
if (!dart.notNull(this[_mayAddEvent]))
throw this[_badEventState]();
this[_closeUnchecked]();
return this[_ensureDoneFuture]();
}
[_closeUnchecked]() {
this[_state] = _StreamController[_STATE_CLOSED];
if (this.hasListener) {
this[_sendDone]();
} else if (this[_isInitialState]) {
this[_ensurePendingEvents]().add(new _DelayedDone());
}
}
[_add](value) {
if (this.hasListener) {
this[_sendData](value);
} else if (this[_isInitialState]) {
this[_ensurePendingEvents]().add(new (_DelayedData$(T))(value));
}
}
[_addError](error, stackTrace) {
if (this.hasListener) {
this[_sendError](error, stackTrace);
} else if (this[_isInitialState]) {
this[_ensurePendingEvents]().add(new _DelayedError(error, stackTrace));
}
}
[_close]() {
dart.assert(this[_isAddingStream]);
let addState = dart.as(this[_varData], _StreamControllerAddStreamState);
this[_varData] = addState.varData;
this[_state] = ~dart.notNull(_StreamController[_STATE_ADDSTREAM]);
addState.complete();
}
[_subscribe](onData, onError, onDone, cancelOnError) {
if (!dart.notNull(this[_isInitialState])) {
throw new core.StateError("Stream has already been listened to.");
}
let subscription = new _ControllerSubscription(this, onData, onError, onDone, cancelOnError);
let pendingEvents = this[_pendingEvents];
this[_state] = _StreamController[_STATE_SUBSCRIBED];
if (this[_isAddingStream]) {
let addState = dart.as(this[_varData], _StreamControllerAddStreamState);
addState.varData = subscription;
addState.resume();
} else {
this[_varData] = subscription;
}
subscription[_setPendingEvents](pendingEvents);
subscription[_guardCallback]((() => {
_runGuarded(this[_onListen]);
}).bind(this));
return dart.as(subscription, StreamSubscription$(T));
}
[_recordCancel](subscription) {
let result = null;
if (this[_isAddingStream]) {
let addState = dart.as(this[_varData], _StreamControllerAddStreamState);
result = addState.cancel();
}
this[_varData] = null;
this[_state] = dart.notNull(this[_state]) & ~(dart.notNull(_StreamController[_STATE_SUBSCRIBED]) | dart.notNull(_StreamController[_STATE_ADDSTREAM])) | dart.notNull(_StreamController[_STATE_CANCELED]);
if (this[_onCancel] != null) {
if (result == null) {
try {
result = dart.as(this[_onCancel](), Future);
} catch (e) {
let s = dart.stackTrace(e);
result = ((_$) => {
_$[_asyncCompleteError](e, s);
return _$;
})(new _Future());
}
} else {
result = result.whenComplete(this[_onCancel]);
}
}
// Function complete: () → void
function complete() {
if (dart.notNull(this[_doneFuture] != null) && dart.notNull(this[_doneFuture][_mayComplete])) {
this[_doneFuture][_asyncComplete](null);
}
}
if (result != null) {
result = result.whenComplete(complete);
} else {
complete();
}
return result;
}
[_recordPause](subscription) {
if (this[_isAddingStream]) {
let addState = dart.as(this[_varData], _StreamControllerAddStreamState);
addState.pause();
}
_runGuarded(this[_onPause]);
}
[_recordResume](subscription) {
if (this[_isAddingStream]) {
let addState = dart.as(this[_varData], _StreamControllerAddStreamState);
addState.resume();
}
_runGuarded(this[_onResume]);
}
}
_StreamController[dart.implements] = () => [StreamController$(T), _StreamControllerLifecycle$(T), _EventSink$(T), _EventDispatch$(T)];
_StreamController._STATE_INITIAL = 0;
_StreamController._STATE_SUBSCRIBED = 1;
_StreamController._STATE_CANCELED = 2;
_StreamController._STATE_SUBSCRIPTION_MASK = 3;
_StreamController._STATE_CLOSED = 4;
_StreamController._STATE_ADDSTREAM = 8;
return _StreamController;
});
let _StreamController = _StreamController$();
let _SyncStreamControllerDispatch$ = dart.generic(function(T) {
class _SyncStreamControllerDispatch extends core.Object {
[_sendData](data) {
this[_subscription][_add](data);
}
[_sendError](error, stackTrace) {
this[_subscription][_addError](error, stackTrace);
}
[_sendDone]() {
this[_subscription][_close]();
}
}
_SyncStreamControllerDispatch[dart.implements] = () => [_StreamController$(T)];
return _SyncStreamControllerDispatch;
});
let _SyncStreamControllerDispatch = _SyncStreamControllerDispatch$();
let _AsyncStreamControllerDispatch$ = dart.generic(function(T) {
class _AsyncStreamControllerDispatch extends core.Object {
[_sendData](data) {
this[_subscription][_addPending](new _DelayedData(data));
}
[_sendError](error, stackTrace) {
this[_subscription][_addPending](new _DelayedError(error, stackTrace));
}
[_sendDone]() {
this[_subscription][_addPending](new _DelayedDone());
}
}
_AsyncStreamControllerDispatch[dart.implements] = () => [_StreamController$(T)];
return _AsyncStreamControllerDispatch;
});
let _AsyncStreamControllerDispatch = _AsyncStreamControllerDispatch$();
let _AsyncStreamController$ = dart.generic(function(T) {
class _AsyncStreamController extends dart.mixin(_StreamController$(T), _AsyncStreamControllerDispatch$(T)) {
_AsyncStreamController(onListen$, onPause$, onResume$, onCancel$) {
this[_onListen] = onListen$;
this[_onPause] = onPause$;
this[_onResume] = onResume$;
this[_onCancel] = onCancel$;
super._StreamController();
}
}
return _AsyncStreamController;
});
let _AsyncStreamController = _AsyncStreamController$();
let _SyncStreamController$ = dart.generic(function(T) {
class _SyncStreamController extends dart.mixin(_StreamController$(T), _SyncStreamControllerDispatch$(T)) {
_SyncStreamController(onListen$, onPause$, onResume$, onCancel$) {
this[_onListen] = onListen$;
this[_onPause] = onPause$;
this[_onResume] = onResume$;
this[_onCancel] = onCancel$;
super._StreamController();
}
}
return _SyncStreamController;
});
let _SyncStreamController = _SyncStreamController$();
class _NoCallbacks extends core.Object {
get [_onListen]() {
return null;
}
get [_onPause]() {
return null;
}
get [_onResume]() {
return null;
}
get [_onCancel]() {
return null;
}
}
class _NoCallbackAsyncStreamController extends dart.mixin(_AsyncStreamControllerDispatch, _NoCallbacks) {}
class _NoCallbackSyncStreamController extends dart.mixin(_SyncStreamControllerDispatch, _NoCallbacks) {}
class _NotificationHandler extends core.Function {}
// Function _runGuarded: (() → dynamic) → Future<dynamic>
function _runGuarded(notificationHandler) {
if (notificationHandler == null)
return null;
try {
let result = notificationHandler();
if (dart.is(result, Future))
return dart.as(result, Future);
return null;
} catch (e) {
let s = dart.stackTrace(e);
Zone.current.handleUncaughtError(e, s);
}
}
let _target = Symbol('_target');
let _StreamSinkWrapper$ = dart.generic(function(T) {
class _StreamSinkWrapper extends core.Object {
_StreamSinkWrapper(target$) {
this[_target] = target$;
}
add(data) {
this[_target].add(data);
}
addError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
this[_target].addError(error, stackTrace);
}
close() {
return this[_target].close();
}
addStream(source, opts) {
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : true;
return this[_target].addStream(source, {cancelOnError: cancelOnError});
}
get done() {
return this[_target].done;
}
}
_StreamSinkWrapper[dart.implements] = () => [StreamSink$(T)];
return _StreamSinkWrapper;
});
let _StreamSinkWrapper = _StreamSinkWrapper$();
let _AddStreamState$ = dart.generic(function(T) {
class _AddStreamState extends core.Object {
_AddStreamState(controller, source, cancelOnError) {
this.addStreamFuture = new _Future();
this.addSubscription = source.listen(controller[_add], {onError: dart.as(cancelOnError ? _AddStreamState.makeErrorHandler(controller) : controller[_addError], core.Function), onDone: controller[_close], cancelOnError: cancelOnError});
}
static makeErrorHandler(controller) {
return (e, s) => {
controller[_addError](e, s);
controller[_close]();
};
}
pause() {
this.addSubscription.pause();
}
resume() {
this.addSubscription.resume();
}
cancel() {
let cancel = this.addSubscription.cancel();
if (cancel == null) {
this.addStreamFuture[_asyncComplete](null);
return null;
}
return cancel.whenComplete((() => {
this.addStreamFuture[_asyncComplete](null);
}).bind(this));
}
complete() {
this.addStreamFuture[_asyncComplete](null);
}
}
return _AddStreamState;
});
let _AddStreamState = _AddStreamState$();
let _StreamControllerAddStreamState$ = dart.generic(function(T) {
class _StreamControllerAddStreamState extends _AddStreamState$(T) {
_StreamControllerAddStreamState(controller, varData, source, cancelOnError) {
this.varData = varData;
super._AddStreamState(dart.as(controller, _EventSink$(T)), source, cancelOnError);
if (controller.isPaused) {
this.addSubscription.pause();
}
}
}
return _StreamControllerAddStreamState;
});
let _StreamControllerAddStreamState = _StreamControllerAddStreamState$();
let _EventSink$ = dart.generic(function(T) {
class _EventSink extends core.Object {}
return _EventSink;
});
let _EventSink = _EventSink$();
let _EventDispatch$ = dart.generic(function(T) {
class _EventDispatch extends core.Object {}
return _EventDispatch;
});
let _EventDispatch = _EventDispatch$();
class _EventGenerator extends core.Function {}
let _isUsed = Symbol('_isUsed');
let _GeneratedStreamImpl$ = dart.generic(function(T) {
class _GeneratedStreamImpl extends _StreamImpl$(T) {
_GeneratedStreamImpl(pending$) {
this[_pending] = pending$;
this[_isUsed] = false;
super._StreamImpl();
}
[_createSubscription](onData, onError, onDone, cancelOnError) {
if (this[_isUsed])
throw new core.StateError("Stream has already been listened to.");
this[_isUsed] = true;
return ((_$) => {
_$[_setPendingEvents](this[_pending]());
return _$;
}).bind(this)(new _BufferingStreamSubscription(onData, onError, onDone, cancelOnError));
}
}
return _GeneratedStreamImpl;
});
let _GeneratedStreamImpl = _GeneratedStreamImpl$();
let _iterator = Symbol('_iterator');
let _STATE_UNSCHEDULED = Symbol('_STATE_UNSCHEDULED');
let _STATE_SCHEDULED = Symbol('_STATE_SCHEDULED');
let _eventScheduled = Symbol('_eventScheduled');
class _PendingEvents extends core.Object {
_PendingEvents() {
this[_state] = _PendingEvents[_STATE_UNSCHEDULED];
}
get isScheduled() {
return this[_state] == _PendingEvents[_STATE_SCHEDULED];
}
get [_eventScheduled]() {
return dart.notNull(this[_state]) >= dart.notNull(_PendingEvents[_STATE_SCHEDULED]);
}
schedule(dispatch) {
if (this.isScheduled)
return;
dart.assert(!dart.notNull(this.isEmpty));
if (this[_eventScheduled]) {
dart.assert(this[_state] == _PendingEvents[_STATE_CANCELED]);
this[_state] = _PendingEvents[_STATE_SCHEDULED];
return;
}
scheduleMicrotask((() => {
let oldState = this[_state];
this[_state] = _PendingEvents[_STATE_UNSCHEDULED];
if (oldState == _PendingEvents[_STATE_CANCELED])
return;
this.handleNext(dispatch);
}).bind(this));
this[_state] = _PendingEvents[_STATE_SCHEDULED];
}
cancelSchedule() {
if (this.isScheduled)
this[_state] = _PendingEvents[_STATE_CANCELED];
}
}
_PendingEvents._STATE_UNSCHEDULED = 0;
_PendingEvents._STATE_SCHEDULED = 1;
_PendingEvents._STATE_CANCELED = 3;
let _IterablePendingEvents$ = dart.generic(function(T) {
class _IterablePendingEvents extends _PendingEvents {
_IterablePendingEvents(data) {
this[_iterator] = data[core.$iterator];
super._PendingEvents();
}
get isEmpty() {
return this[_iterator] == null;
}
handleNext(dispatch) {
if (this[_iterator] == null) {
throw new core.StateError("No events pending.");
}
let isDone = null;
try {
isDone = !dart.notNull(this[_iterator].moveNext());
} catch (e) {
let s = dart.stackTrace(e);
this[_iterator] = null;
dispatch[_sendError](e, s);
return;
}
if (!dart.notNull(isDone)) {
dispatch[_sendData](this[_iterator].current);
} else {
this[_iterator] = null;
dispatch[_sendDone]();
}
}
clear() {
if (this.isScheduled)
this.cancelSchedule();
this[_iterator] = null;
}
}
return _IterablePendingEvents;
});
let _IterablePendingEvents = _IterablePendingEvents$();
let _DataHandler$ = dart.generic(function(T) {
class _DataHandler extends core.Function {}
return _DataHandler;
});
let _DataHandler = _DataHandler$();
class _DoneHandler extends core.Function {}
// Function _nullDataHandler: (dynamic) → void
function _nullDataHandler(value) {
}
// Function _nullErrorHandler: (dynamic, [StackTrace]) → void
function _nullErrorHandler(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
Zone.current.handleUncaughtError(error, stackTrace);
}
// Function _nullDoneHandler: () → void
function _nullDoneHandler() {
}
class _DelayedEvent extends core.Object {
_DelayedEvent() {
this.next = null;
}
}
let _DelayedData$ = dart.generic(function(T) {
class _DelayedData extends _DelayedEvent {
_DelayedData(value) {
this.value = value;
super._DelayedEvent();
}
perform(dispatch) {
dispatch[_sendData](this.value);
}
}
return _DelayedData;
});
let _DelayedData = _DelayedData$();
class _DelayedError extends _DelayedEvent {
_DelayedError(error, stackTrace) {
this.error = error;
this.stackTrace = stackTrace;
super._DelayedEvent();
}
perform(dispatch) {
dispatch[_sendError](this.error, this.stackTrace);
}
}
class _DelayedDone extends core.Object {
_DelayedDone() {
}
perform(dispatch) {
dispatch[_sendDone]();
}
get next() {
return null;
}
set next(_) {
throw new core.StateError("No events after a done.");
}
}
_DelayedDone[dart.implements] = () => [_DelayedEvent];
class _StreamImplEvents extends _PendingEvents {
_StreamImplEvents() {
this.firstPendingEvent = null;
this.lastPendingEvent = null;
super._PendingEvents();
}
get isEmpty() {
return this.lastPendingEvent == null;
}
add(event) {
if (this.lastPendingEvent == null) {
this.firstPendingEvent = this.lastPendingEvent = event;
} else {
this.lastPendingEvent = this.lastPendingEvent.next = event;
}
}
handleNext(dispatch) {
dart.assert(!dart.notNull(this.isScheduled));
let event = this.firstPendingEvent;
this.firstPendingEvent = event.next;
if (this.firstPendingEvent == null) {
this.lastPendingEvent = null;
}
event.perform(dispatch);
}
clear() {
if (this.isScheduled)
this.cancelSchedule();
this.firstPendingEvent = this.lastPendingEvent = null;
}
}
let _unlink = Symbol('_unlink');
let _insertBefore = Symbol('_insertBefore');
class _BroadcastLinkedList extends core.Object {
_BroadcastLinkedList() {
this[_next] = null;
this[_previous] = null;
}
[_unlink]() {
this[_previous][_next] = this[_next];
this[_next][_previous] = this[_previous];
this[_next] = this[_previous] = this;
}
[_insertBefore](newNext) {
let newPrevious = newNext[_previous];
newPrevious[_next] = this;
newNext[_previous] = this[_previous];
this[_previous][_next] = newNext;
this[_previous] = newPrevious;
}
}
class _broadcastCallback extends core.Function {}
let _schedule = Symbol('_schedule');
let _isSent = Symbol('_isSent');
let _DONE_SENT = Symbol('_DONE_SENT');
let _isScheduled = Symbol('_isScheduled');
let _SCHEDULED = Symbol('_SCHEDULED');
let _PAUSED = Symbol('_PAUSED');
let _DoneStreamSubscription$ = dart.generic(function(T) {
class _DoneStreamSubscription extends core.Object {
_DoneStreamSubscription(onDone$) {
this[_onDone] = onDone$;
this[_zone] = Zone.current;
this[_state] = 0;
this[_schedule]();
}
get [_isSent]() {
return (dart.notNull(this[_state]) & dart.notNull(_DoneStreamSubscription[_DONE_SENT])) != 0;
}
get [_isScheduled]() {
return (dart.notNull(this[_state]) & dart.notNull(_DoneStreamSubscription[_SCHEDULED])) != 0;
}
get isPaused() {
return dart.notNull(this[_state]) >= dart.notNull(_DoneStreamSubscription[_PAUSED]);
}
[_schedule]() {
if (this[_isScheduled])
return;
this[_zone].scheduleMicrotask(this[_sendDone]);
this[_state] = _DoneStreamSubscription[_SCHEDULED];
}
onData(handleData) {}
onError(handleError) {}
onDone(handleDone) {
this[_onDone] = handleDone;
}
pause(resumeSignal) {
if (resumeSignal === void 0)
resumeSignal = null;
this[_state] = _DoneStreamSubscription[_PAUSED];
if (resumeSignal != null)
resumeSignal.whenComplete(this.resume);
}
resume() {
if (this.isPaused) {
this[_state] = _DoneStreamSubscription[_PAUSED];
if (!dart.notNull(this.isPaused) && !dart.notNull(this[_isSent])) {
this[_schedule]();
}
}
}
cancel() {
return null;
}
asFuture(futureValue) {
if (futureValue === void 0)
futureValue = null;
let result = new _Future();
this[_onDone] = () => {
result[_completeWithValue](null);
};
return result;
}
[_sendDone]() {
this[_state] = ~dart.notNull(_DoneStreamSubscription[_SCHEDULED]);
if (this.isPaused)
return;
this[_state] = _DoneStreamSubscription[_DONE_SENT];
if (this[_onDone] != null)
this[_zone].runGuarded(this[_onDone]);
}
}
_DoneStreamSubscription[dart.implements] = () => [StreamSubscription$(T)];
_DoneStreamSubscription._DONE_SENT = 1;
_DoneStreamSubscription._SCHEDULED = 2;
_DoneStreamSubscription._PAUSED = 4;
return _DoneStreamSubscription;
});
let _DoneStreamSubscription = _DoneStreamSubscription$();
let _source = Symbol('_source');
let _onListenHandler = Symbol('_onListenHandler');
let _onCancelHandler = Symbol('_onCancelHandler');
let _cancelSubscription = Symbol('_cancelSubscription');
let _pauseSubscription = Symbol('_pauseSubscription');
let _resumeSubscription = Symbol('_resumeSubscription');
let _isSubscriptionPaused = Symbol('_isSubscriptionPaused');
let _AsBroadcastStream$ = dart.generic(function(T) {
class _AsBroadcastStream extends Stream$(T) {
_AsBroadcastStream(source$, onListenHandler, onCancelHandler) {
this[_source] = source$;
this[_onListenHandler] = dart.as(Zone.current.registerUnaryCallback(onListenHandler), _broadcastCallback);
this[_onCancelHandler] = dart.as(Zone.current.registerUnaryCallback(onCancelHandler), _broadcastCallback);
this[_zone] = Zone.current;
this[_controller] = null;
this[_subscription] = null;
super.Stream();
this[_controller] = new (_AsBroadcastStreamController$(T))(this[_onListen], this[_onCancel]);
}
get isBroadcast() {
return true;
}
listen(onData, opts) {
let onError = opts && 'onError' in opts ? opts.onError : null;
let onDone = opts && 'onDone' in opts ? opts.onDone : null;
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : null;
if (dart.notNull(this[_controller] == null) || dart.notNull(this[_controller].isClosed)) {
return new (_DoneStreamSubscription$(T))(onDone);
}
if (this[_subscription] == null) {
this[_subscription] = this[_source].listen(this[_controller].add, {onError: this[_controller].addError, onDone: this[_controller].close});
}
cancelOnError = core.identical(true, cancelOnError);
return this[_controller][_subscribe](onData, onError, onDone, cancelOnError);
}
[_onCancel]() {
let shutdown = dart.notNull(this[_controller] == null) || dart.notNull(this[_controller].isClosed);
if (this[_onCancelHandler] != null) {
this[_zone].runUnary(this[_onCancelHandler], new _BroadcastSubscriptionWrapper(this));
}
if (shutdown) {
if (this[_subscription] != null) {
this[_subscription].cancel();
this[_subscription] = null;
}
}
}
[_onListen]() {
if (this[_onListenHandler] != null) {
this[_zone].runUnary(this[_onListenHandler], new _BroadcastSubscriptionWrapper(this));
}
}
[_cancelSubscription]() {
if (this[_subscription] == null)
return;
let subscription = this[_subscription];
this[_subscription] = null;
this[_controller] = null;
subscription.cancel();
}
[_pauseSubscription](resumeSignal) {
if (this[_subscription] == null)
return;
this[_subscription].pause(resumeSignal);
}
[_resumeSubscription]() {
if (this[_subscription] == null)
return;
this[_subscription].resume();
}
get [_isSubscriptionPaused]() {
if (this[_subscription] == null)
return false;
return this[_subscription].isPaused;
}
}
return _AsBroadcastStream;
});
let _AsBroadcastStream = _AsBroadcastStream$();
let _BroadcastSubscriptionWrapper$ = dart.generic(function(T) {
class _BroadcastSubscriptionWrapper extends core.Object {
_BroadcastSubscriptionWrapper(stream$) {
this[_stream] = stream$;
}
onData(handleData) {
throw new core.UnsupportedError("Cannot change handlers of asBroadcastStream source subscription.");
}
onError(handleError) {
throw new core.UnsupportedError("Cannot change handlers of asBroadcastStream source subscription.");
}
onDone(handleDone) {
throw new core.UnsupportedError("Cannot change handlers of asBroadcastStream source subscription.");
}
pause(resumeSignal) {
if (resumeSignal === void 0)
resumeSignal = null;
this[_stream][_pauseSubscription](resumeSignal);
}
resume() {
this[_stream][_resumeSubscription]();
}
cancel() {
this[_stream][_cancelSubscription]();
return null;
}
get isPaused() {
return this[_stream][_isSubscriptionPaused];
}
asFuture(futureValue) {
if (futureValue === void 0)
futureValue = null;
throw new core.UnsupportedError("Cannot change handlers of asBroadcastStream source subscription.");
}
}
_BroadcastSubscriptionWrapper[dart.implements] = () => [StreamSubscription$(T)];
return _BroadcastSubscriptionWrapper;
});
let _BroadcastSubscriptionWrapper = _BroadcastSubscriptionWrapper$();
let _current = Symbol('_current');
let _futureOrPrefetch = Symbol('_futureOrPrefetch');
let _STATE_FOUND = Symbol('_STATE_FOUND');
let _STATE_DONE = Symbol('_STATE_DONE');
let _STATE_MOVING = Symbol('_STATE_MOVING');
let _STATE_EXTRA_DATA = Symbol('_STATE_EXTRA_DATA');
let _STATE_EXTRA_ERROR = Symbol('_STATE_EXTRA_ERROR');
let _clear = Symbol('_clear');
let _STATE_EXTRA_DONE = Symbol('_STATE_EXTRA_DONE');
let _StreamIteratorImpl$ = dart.generic(function(T) {
class _StreamIteratorImpl extends core.Object {
_StreamIteratorImpl(stream) {
this[_subscription] = null;
this[_current] = null;
this[_futureOrPrefetch] = null;
this[_state] = _StreamIteratorImpl[_STATE_FOUND];
this[_subscription] = stream.listen(this[_onData], {onError: this[_onError], onDone: this[_onDone], cancelOnError: true});
}
get current() {
return this[_current];
}
moveNext() {
if (this[_state] == _StreamIteratorImpl[_STATE_DONE]) {
return new _Future$(core.bool).immediate(false);
}
if (this[_state] == _StreamIteratorImpl[_STATE_MOVING]) {
throw new core.StateError("Already waiting for next.");
}
if (this[_state] == _StreamIteratorImpl[_STATE_FOUND]) {
this[_state] = _StreamIteratorImpl[_STATE_MOVING];
this[_current] = null;
this[_futureOrPrefetch] = new (_Future$(core.bool))();
return dart.as(this[_futureOrPrefetch], Future$(core.bool));
} else {
dart.assert(dart.notNull(this[_state]) >= dart.notNull(_StreamIteratorImpl[_STATE_EXTRA_DATA]));
switch (this[_state]) {
case _StreamIteratorImpl[_STATE_EXTRA_DATA]:
{
this[_state] = _StreamIteratorImpl[_STATE_FOUND];
this[_current] = dart.as(this[_futureOrPrefetch], T);
this[_futureOrPrefetch] = null;
this[_subscription].resume();
return new _Future$(core.bool).immediate(true);
}
case _StreamIteratorImpl[_STATE_EXTRA_ERROR]:
{
let prefetch = dart.as(this[_futureOrPrefetch], AsyncError);
this[_clear]();
return new _Future$(core.bool).immediateError(prefetch.error, prefetch.stackTrace);
}
case _StreamIteratorImpl[_STATE_EXTRA_DONE]:
{
this[_clear]();
return new _Future$(core.bool).immediate(false);
}
}
}
}
[_clear]() {
this[_subscription] = null;
this[_futureOrPrefetch] = null;
this[_current] = null;
this[_state] = _StreamIteratorImpl[_STATE_DONE];
}
cancel() {
let subscription = this[_subscription];
if (this[_state] == _StreamIteratorImpl[_STATE_MOVING]) {
let hasNext = dart.as(this[_futureOrPrefetch], _Future$(core.bool));
this[_clear]();
hasNext[_complete](false);
} else {
this[_clear]();
}
return subscription.cancel();
}
[_onData](data) {
if (this[_state] == _StreamIteratorImpl[_STATE_MOVING]) {
this[_current] = data;
let hasNext = dart.as(this[_futureOrPrefetch], _Future$(core.bool));
this[_futureOrPrefetch] = null;
this[_state] = _StreamIteratorImpl[_STATE_FOUND];
hasNext[_complete](true);
return;
}
this[_subscription].pause();
dart.assert(this[_futureOrPrefetch] == null);
this[_futureOrPrefetch] = data;
this[_state] = _StreamIteratorImpl[_STATE_EXTRA_DATA];
}
[_onError](error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
if (this[_state] == _StreamIteratorImpl[_STATE_MOVING]) {
let hasNext = dart.as(this[_futureOrPrefetch], _Future$(core.bool));
this[_clear]();
hasNext[_completeError](error, stackTrace);
return;
}
this[_subscription].pause();
dart.assert(this[_futureOrPrefetch] == null);
this[_futureOrPrefetch] = new AsyncError(error, stackTrace);
this[_state] = _StreamIteratorImpl[_STATE_EXTRA_ERROR];
}
[_onDone]() {
if (this[_state] == _StreamIteratorImpl[_STATE_MOVING]) {
let hasNext = dart.as(this[_futureOrPrefetch], _Future$(core.bool));
this[_clear]();
hasNext[_complete](false);
return;
}
this[_subscription].pause();
this[_futureOrPrefetch] = null;
this[_state] = _StreamIteratorImpl[_STATE_EXTRA_DONE];
}
}
_StreamIteratorImpl[dart.implements] = () => [StreamIterator$(T)];
_StreamIteratorImpl._STATE_FOUND = 0;
_StreamIteratorImpl._STATE_DONE = 1;
_StreamIteratorImpl._STATE_MOVING = 2;
_StreamIteratorImpl._STATE_EXTRA_DATA = 3;
_StreamIteratorImpl._STATE_EXTRA_ERROR = 4;
_StreamIteratorImpl._STATE_EXTRA_DONE = 5;
return _StreamIteratorImpl;
});
let _StreamIteratorImpl = _StreamIteratorImpl$();
// Function _runUserCode: (() → dynamic, (dynamic) → dynamic, (dynamic, StackTrace) → dynamic) → dynamic
function _runUserCode(userCode, onSuccess, onError) {
try {
dart.dinvokef(onSuccess, userCode());
} catch (e) {
let s = dart.stackTrace(e);
let replacement = Zone.current.errorCallback(e, s);
if (replacement == null) {
dart.dinvokef(onError, e, s);
} else {
let error = _nonNullError(replacement.error);
let stackTrace = replacement.stackTrace;
dart.dinvokef(onError, error, stackTrace);
}
}
}
// Function _cancelAndError: (StreamSubscription<dynamic>, _Future<dynamic>, dynamic, StackTrace) → void
function _cancelAndError(subscription, future, error, stackTrace) {
let cancelFuture = subscription.cancel();
if (dart.is(cancelFuture, Future)) {
cancelFuture.whenComplete(() => future[_completeError](error, stackTrace));
} else {
future[_completeError](error, stackTrace);
}
}
// Function _cancelAndErrorWithReplacement: (StreamSubscription<dynamic>, _Future<dynamic>, dynamic, StackTrace) → void
function _cancelAndErrorWithReplacement(subscription, future, error, stackTrace) {
let replacement = Zone.current.errorCallback(error, stackTrace);
if (replacement != null) {
error = _nonNullError(replacement.error);
stackTrace = replacement.stackTrace;
}
_cancelAndError(subscription, future, error, stackTrace);
}
// Function _cancelAndErrorClosure: (StreamSubscription<dynamic>, _Future<dynamic>) → dynamic
function _cancelAndErrorClosure(subscription, future) {
return (error, stackTrace) => _cancelAndError(subscription, future, error, stackTrace);
}
// Function _cancelAndValue: (StreamSubscription<dynamic>, _Future<dynamic>, dynamic) → void
function _cancelAndValue(subscription, future, value) {
let cancelFuture = subscription.cancel();
if (dart.is(cancelFuture, Future)) {
cancelFuture.whenComplete(() => future[_complete](value));
} else {
future[_complete](value);
}
}
let _handleData = Symbol('_handleData');
let _handleError = Symbol('_handleError');
let _handleDone = Symbol('_handleDone');
let _ForwardingStream$ = dart.generic(function(S, T) {
class _ForwardingStream extends Stream$(T) {
_ForwardingStream(source$) {
this[_source] = source$;
super.Stream();
}
get isBroadcast() {
return this[_source].isBroadcast;
}
listen(onData, opts) {
let onError = opts && 'onError' in opts ? opts.onError : null;
let onDone = opts && 'onDone' in opts ? opts.onDone : null;
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : null;
cancelOnError = core.identical(true, cancelOnError);
return this[_createSubscription](onData, onError, onDone, cancelOnError);
}
[_createSubscription](onData, onError, onDone, cancelOnError) {
return new (_ForwardingStreamSubscription$(S, T))(this, onData, onError, onDone, cancelOnError);
}
[_handleData](data, sink) {
let outputData = data;
sink[_add](outputData);
}
[_handleError](error, stackTrace, sink) {
sink[_addError](error, stackTrace);
}
[_handleDone](sink) {
sink[_close]();
}
}
return _ForwardingStream;
});
let _ForwardingStream = _ForwardingStream$();
let _ForwardingStreamSubscription$ = dart.generic(function(S, T) {
class _ForwardingStreamSubscription extends _BufferingStreamSubscription$(T) {
_ForwardingStreamSubscription(stream$, onData, onError, onDone, cancelOnError) {
this[_stream] = stream$;
this[_subscription] = null;
super._BufferingStreamSubscription(onData, onError, onDone, cancelOnError);
this[_subscription] = this[_stream][_source].listen(this[_handleData], {onError: this[_handleError], onDone: this[_handleDone]});
}
[_add](data) {
if (this[_isClosed])
return;
super[_add](data);
}
[_addError](error, stackTrace) {
if (this[_isClosed])
return;
super[_addError](error, stackTrace);
}
[_onPause]() {
if (this[_subscription] == null)
return;
this[_subscription].pause();
}
[_onResume]() {
if (this[_subscription] == null)
return;
this[_subscription].resume();
}
[_onCancel]() {
if (this[_subscription] != null) {
let subscription = this[_subscription];
this[_subscription] = null;
subscription.cancel();
}
return null;
}
[_handleData](data) {
this[_stream][_handleData](data, this);
}
[_handleError](error, stackTrace) {
this[_stream][_handleError](error, stackTrace, this);
}
[_handleDone]() {
this[_stream][_handleDone](this);
}
}
return _ForwardingStreamSubscription;
});
let _ForwardingStreamSubscription = _ForwardingStreamSubscription$();
let _Predicate$ = dart.generic(function(T) {
class _Predicate extends core.Function {}
return _Predicate;
});
let _Predicate = _Predicate$();
// Function _addErrorWithReplacement: (_EventSink<dynamic>, dynamic, dynamic) → void
function _addErrorWithReplacement(sink, error, stackTrace) {
let replacement = Zone.current.errorCallback(error, dart.as(stackTrace, core.StackTrace));
if (replacement != null) {
error = _nonNullError(replacement.error);
stackTrace = replacement.stackTrace;
}
sink[_addError](error, dart.as(stackTrace, core.StackTrace));
}
let _test = Symbol('_test');
let _WhereStream$ = dart.generic(function(T) {
class _WhereStream extends _ForwardingStream$(T, T) {
_WhereStream(source, test) {
this[_test] = test;
super._ForwardingStream(source);
}
[_handleData](inputEvent, sink) {
let satisfies = null;
try {
satisfies = this[_test](inputEvent);
} catch (e) {
let s = dart.stackTrace(e);
_addErrorWithReplacement(sink, e, s);
return;
}
if (satisfies) {
sink[_add](inputEvent);
}
}
}
return _WhereStream;
});
let _WhereStream = _WhereStream$();
let _Transformation$ = dart.generic(function(S, T) {
class _Transformation extends core.Function {}
return _Transformation;
});
let _Transformation = _Transformation$();
let _transform = Symbol('_transform');
let _MapStream$ = dart.generic(function(S, T) {
class _MapStream extends _ForwardingStream$(S, T) {
_MapStream(source, transform) {
this[_transform] = transform;
super._ForwardingStream(source);
}
[_handleData](inputEvent, sink) {
let outputEvent = null;
try {
outputEvent = dart.as(dart.dinvokef(this[_transform], inputEvent), T);
} catch (e) {
let s = dart.stackTrace(e);
_addErrorWithReplacement(sink, e, s);
return;
}
sink[_add](outputEvent);
}
}
return _MapStream;
});
let _MapStream = _MapStream$();
let _expand = Symbol('_expand');
let _ExpandStream$ = dart.generic(function(S, T) {
class _ExpandStream extends _ForwardingStream$(S, T) {
_ExpandStream(source, expand) {
this[_expand] = expand;
super._ForwardingStream(source);
}
[_handleData](inputEvent, sink) {
try {
for (let value of this[_expand](inputEvent)) {
sink[_add](value);
}
} catch (e) {
let s = dart.stackTrace(e);
_addErrorWithReplacement(sink, e, s);
}
}
}
return _ExpandStream;
});
let _ExpandStream = _ExpandStream$();
class _ErrorTest extends core.Function {}
let _HandleErrorStream$ = dart.generic(function(T) {
class _HandleErrorStream extends _ForwardingStream$(T, T) {
_HandleErrorStream(source, onError, test) {
this[_transform] = onError;
this[_test] = test;
super._ForwardingStream(source);
}
[_handleError](error, stackTrace, sink) {
let matches = true;
if (this[_test] != null) {
try {
matches = dart.dinvokef(this[_test], error);
} catch (e) {
let s = dart.stackTrace(e);
_addErrorWithReplacement(sink, e, s);
return;
}
}
if (matches) {
try {
_invokeErrorHandler(this[_transform], error, stackTrace);
} catch (e) {
let s = dart.stackTrace(e);
if (core.identical(e, error)) {
sink[_addError](error, stackTrace);
} else {
_addErrorWithReplacement(sink, e, s);
}
return;
}
} else {
sink[_addError](error, stackTrace);
}
}
}
return _HandleErrorStream;
});
let _HandleErrorStream = _HandleErrorStream$();
let _remaining = Symbol('_remaining');
let _TakeStream$ = dart.generic(function(T) {
class _TakeStream extends _ForwardingStream$(T, T) {
_TakeStream(source, count) {
this[_remaining] = count;
super._ForwardingStream(source);
if (!(typeof count == 'number'))
throw new core.ArgumentError(count);
}
[_handleData](inputEvent, sink) {
if (dart.notNull(this[_remaining]) > 0) {
sink[_add](inputEvent);
this[_remaining] = 1;
if (this[_remaining] == 0) {
sink[_close]();
}
}
}
}
return _TakeStream;
});
let _TakeStream = _TakeStream$();
let _TakeWhileStream$ = dart.generic(function(T) {
class _TakeWhileStream extends _ForwardingStream$(T, T) {
_TakeWhileStream(source, test) {
this[_test] = test;
super._ForwardingStream(source);
}
[_handleData](inputEvent, sink) {
let satisfies = null;
try {
satisfies = this[_test](inputEvent);
} catch (e) {
let s = dart.stackTrace(e);
_addErrorWithReplacement(sink, e, s);
sink[_close]();
return;
}
if (satisfies) {
sink[_add](inputEvent);
} else {
sink[_close]();
}
}
}
return _TakeWhileStream;
});
let _TakeWhileStream = _TakeWhileStream$();
let _SkipStream$ = dart.generic(function(T) {
class _SkipStream extends _ForwardingStream$(T, T) {
_SkipStream(source, count) {
this[_remaining] = count;
super._ForwardingStream(source);
if (dart.notNull(!(typeof count == 'number')) || dart.notNull(count) < 0)
throw new core.ArgumentError(count);
}
[_handleData](inputEvent, sink) {
if (dart.notNull(this[_remaining]) > 0) {
this[_remaining] = dart.notNull(this[_remaining]) - 1;
return;
}
sink[_add](inputEvent);
}
}
return _SkipStream;
});
let _SkipStream = _SkipStream$();
let _hasFailed = Symbol('_hasFailed');
let _SkipWhileStream$ = dart.generic(function(T) {
class _SkipWhileStream extends _ForwardingStream$(T, T) {
_SkipWhileStream(source, test) {
this[_test] = test;
this[_hasFailed] = false;
super._ForwardingStream(source);
}
[_handleData](inputEvent, sink) {
if (this[_hasFailed]) {
sink[_add](inputEvent);
return;
}
let satisfies = null;
try {
satisfies = this[_test](inputEvent);
} catch (e) {
let s = dart.stackTrace(e);
_addErrorWithReplacement(sink, e, s);
this[_hasFailed] = true;
return;
}
if (!dart.notNull(satisfies)) {
this[_hasFailed] = true;
sink[_add](inputEvent);
}
}
}
return _SkipWhileStream;
});
let _SkipWhileStream = _SkipWhileStream$();
let _Equality$ = dart.generic(function(T) {
class _Equality extends core.Function {}
return _Equality;
});
let _Equality = _Equality$();
let _SENTINEL = Symbol('_SENTINEL');
let _equals = Symbol('_equals');
let _DistinctStream$ = dart.generic(function(T) {
class _DistinctStream extends _ForwardingStream$(T, T) {
_DistinctStream(source, equals) {
this[_previous] = _DistinctStream[_SENTINEL];
this[_equals] = equals;
super._ForwardingStream(source);
}
[_handleData](inputEvent, sink) {
if (core.identical(this[_previous], _DistinctStream[_SENTINEL])) {
this[_previous] = inputEvent;
return sink[_add](inputEvent);
} else {
let isEqual = null;
try {
if (this[_equals] == null) {
isEqual = dart.equals(this[_previous], inputEvent);
} else {
isEqual = this[_equals](dart.as(this[_previous], T), inputEvent);
}
} catch (e) {
let s = dart.stackTrace(e);
_addErrorWithReplacement(sink, e, s);
return null;
}
if (!dart.notNull(isEqual)) {
sink[_add](inputEvent);
this[_previous] = inputEvent;
}
}
}
}
dart.defineLazyProperties(_DistinctStream, {
get _SENTINEL() {
return new core.Object();
},
set _SENTINEL(_) {}
});
return _DistinctStream;
});
let _DistinctStream = _DistinctStream$();
let _EventSinkWrapper$ = dart.generic(function(T) {
class _EventSinkWrapper extends core.Object {
_EventSinkWrapper(sink$) {
this[_sink] = sink$;
}
add(data) {
this[_sink][_add](data);
}
addError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
this[_sink][_addError](error, stackTrace);
}
close() {
this[_sink][_close]();
}
}
_EventSinkWrapper[dart.implements] = () => [EventSink$(T)];
return _EventSinkWrapper;
});
let _EventSinkWrapper = _EventSinkWrapper$();
let _transformerSink = Symbol('_transformerSink');
let _isSubscribed = Symbol('_isSubscribed');
let _SinkTransformerStreamSubscription$ = dart.generic(function(S, T) {
class _SinkTransformerStreamSubscription extends _BufferingStreamSubscription$(T) {
_SinkTransformerStreamSubscription(source, mapper, onData, onError, onDone, cancelOnError) {
this[_transformerSink] = null;
this[_subscription] = null;
super._BufferingStreamSubscription(onData, onError, onDone, cancelOnError);
let eventSink = new (_EventSinkWrapper$(T))(this);
this[_transformerSink] = mapper(eventSink);
this[_subscription] = source.listen(this[_handleData], {onError: this[_handleError], onDone: this[_handleDone]});
}
get [_isSubscribed]() {
return this[_subscription] != null;
}
[_add](data) {
if (this[_isClosed]) {
throw new core.StateError("Stream is already closed");
}
super[_add](data);
}
[_addError](error, stackTrace) {
if (this[_isClosed]) {
throw new core.StateError("Stream is already closed");
}
super[_addError](error, stackTrace);
}
[_close]() {
if (this[_isClosed]) {
throw new core.StateError("Stream is already closed");
}
super[_close]();
}
[_onPause]() {
if (this[_isSubscribed])
this[_subscription].pause();
}
[_onResume]() {
if (this[_isSubscribed])
this[_subscription].resume();
}
[_onCancel]() {
if (this[_isSubscribed]) {
let subscription = this[_subscription];
this[_subscription] = null;
subscription.cancel();
}
return null;
}
[_handleData](data) {
try {
this[_transformerSink].add(data);
} catch (e) {
let s = dart.stackTrace(e);
this[_addError](e, s);
}
}
[_handleError](error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
try {
this[_transformerSink].addError(error, dart.as(stackTrace, core.StackTrace));
} catch (e) {
let s = dart.stackTrace(e);
if (core.identical(e, error)) {
this[_addError](error, dart.as(stackTrace, core.StackTrace));
} else {
this[_addError](e, s);
}
}
}
[_handleDone]() {
try {
this[_subscription] = null;
this[_transformerSink].close();
} catch (e) {
let s = dart.stackTrace(e);
this[_addError](e, s);
}
}
}
return _SinkTransformerStreamSubscription;
});
let _SinkTransformerStreamSubscription = _SinkTransformerStreamSubscription$();
let _SinkMapper$ = dart.generic(function(S, T) {
class _SinkMapper extends core.Function {}
return _SinkMapper;
});
let _SinkMapper = _SinkMapper$();
let _sinkMapper = Symbol('_sinkMapper');
let _StreamSinkTransformer$ = dart.generic(function(S, T) {
class _StreamSinkTransformer extends core.Object {
_StreamSinkTransformer(sinkMapper) {
this[_sinkMapper] = sinkMapper;
}
bind(stream) {
return new (_BoundSinkStream$(S, T))(stream, this[_sinkMapper]);
}
}
_StreamSinkTransformer[dart.implements] = () => [StreamTransformer$(S, T)];
return _StreamSinkTransformer;
});
let _StreamSinkTransformer = _StreamSinkTransformer$();
let _BoundSinkStream$ = dart.generic(function(S, T) {
class _BoundSinkStream extends Stream$(T) {
get isBroadcast() {
return this[_stream].isBroadcast;
}
_BoundSinkStream(stream$, sinkMapper) {
this[_stream] = stream$;
this[_sinkMapper] = sinkMapper;
super.Stream();
}
listen(onData, opts) {
let onError = opts && 'onError' in opts ? opts.onError : null;
let onDone = opts && 'onDone' in opts ? opts.onDone : null;
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : null;
cancelOnError = core.identical(true, cancelOnError);
let subscription = new _SinkTransformerStreamSubscription(this[_stream], dart.as(this[_sinkMapper], _SinkMapper), onData, onError, onDone, cancelOnError);
return subscription;
}
}
return _BoundSinkStream;
});
let _BoundSinkStream = _BoundSinkStream$();
let _TransformDataHandler$ = dart.generic(function(S, T) {
class _TransformDataHandler extends core.Function {}
return _TransformDataHandler;
});
let _TransformDataHandler = _TransformDataHandler$();
let _TransformErrorHandler$ = dart.generic(function(T) {
class _TransformErrorHandler extends core.Function {}
return _TransformErrorHandler;
});
let _TransformErrorHandler = _TransformErrorHandler$();
let _TransformDoneHandler$ = dart.generic(function(T) {
class _TransformDoneHandler extends core.Function {}
return _TransformDoneHandler;
});
let _TransformDoneHandler = _TransformDoneHandler$();
let _HandlerEventSink$ = dart.generic(function(S, T) {
class _HandlerEventSink extends core.Object {
_HandlerEventSink(handleData$, handleError$, handleDone$, sink$) {
this[_handleData] = handleData$;
this[_handleError] = handleError$;
this[_handleDone] = handleDone$;
this[_sink] = sink$;
}
add(data) {
return this[_handleData](data, this[_sink]);
}
addError(error, stackTrace) {
if (stackTrace === void 0)
stackTrace = null;
return this[_handleError](error, stackTrace, this[_sink]);
}
close() {
return this[_handleDone](this[_sink]);
}
}
_HandlerEventSink[dart.implements] = () => [EventSink$(S)];
return _HandlerEventSink;
});
let _HandlerEventSink = _HandlerEventSink$();
let _defaultHandleData = Symbol('_defaultHandleData');
let _defaultHandleError = Symbol('_defaultHandleError');
let _defaultHandleDone = Symbol('_defaultHandleDone');
let _StreamHandlerTransformer$ = dart.generic(function(S, T) {
class _StreamHandlerTransformer extends _StreamSinkTransformer$(S, T) {
_StreamHandlerTransformer(opts) {
let handleData = opts && 'handleData' in opts ? opts.handleData : null;
let handleError = opts && 'handleError' in opts ? opts.handleError : null;
let handleDone = opts && 'handleDone' in opts ? opts.handleDone : null;
super._StreamSinkTransformer(dart.as((outputSink) => {
if (handleData == null)
handleData = dart.as(_StreamHandlerTransformer[_defaultHandleData], dart.throw_("Unimplemented type (S, EventSink<T>) → void"));
if (handleError == null)
handleError = dart.as(_StreamHandlerTransformer[_defaultHandleError], dart.throw_("Unimplemented type (Object, StackTrace, EventSink<T>) → void"));
if (handleDone == null)
handleDone = _StreamHandlerTransformer[_defaultHandleDone];
return new (_HandlerEventSink$(S, T))(handleData, handleError, handleDone, outputSink);
}, _SinkMapper));
}
bind(stream) {
return super.bind(stream);
}
static [_defaultHandleData](data, sink) {
sink.add(data);
}
static [_defaultHandleError](error, stackTrace, sink) {
sink.addError(error);
}
static [_defaultHandleDone](sink) {
sink.close();
}
}
return _StreamHandlerTransformer;
});
let _StreamHandlerTransformer = _StreamHandlerTransformer$();
let _SubscriptionTransformer$ = dart.generic(function(S, T) {
class _SubscriptionTransformer extends core.Function {}
return _SubscriptionTransformer;
});
let _SubscriptionTransformer = _SubscriptionTransformer$();
let _transformer = Symbol('_transformer');
let _StreamSubscriptionTransformer$ = dart.generic(function(S, T) {
class _StreamSubscriptionTransformer extends core.Object {
_StreamSubscriptionTransformer(transformer$) {
this[_transformer] = transformer$;
}
bind(stream) {
return new (_BoundSubscriptionStream$(S, T))(stream, this[_transformer]);
}
}
_StreamSubscriptionTransformer[dart.implements] = () => [StreamTransformer$(S, T)];
return _StreamSubscriptionTransformer;
});
let _StreamSubscriptionTransformer = _StreamSubscriptionTransformer$();
let _BoundSubscriptionStream$ = dart.generic(function(S, T) {
class _BoundSubscriptionStream extends Stream$(T) {
_BoundSubscriptionStream(stream$, transformer$) {
this[_stream] = stream$;
this[_transformer] = transformer$;
super.Stream();
}
listen(onData, opts) {
let onError = opts && 'onError' in opts ? opts.onError : null;
let onDone = opts && 'onDone' in opts ? opts.onDone : null;
let cancelOnError = opts && 'cancelOnError' in opts ? opts.cancelOnError : null;
cancelOnError = core.identical(true, cancelOnError);
let result = this[_transformer](this[_stream], cancelOnError);
result.onData(onData);
result.onError(onError);
result.onDone(onDone);
return result;
}
}
return _BoundSubscriptionStream;
});
let _BoundSubscriptionStream = _BoundSubscriptionStream$();
let _createPeriodicTimer = Symbol('_createPeriodicTimer');
class Timer extends core.Object {
Timer(duration, callback) {
if (dart.equals(Zone.current, Zone.ROOT)) {
return Zone.current.createTimer(duration, callback);
}
return Zone.current.createTimer(duration, Zone.current.bindCallback(callback, {runGuarded: true}));
}
periodic(duration, callback) {
if (dart.equals(Zone.current, Zone.ROOT)) {
return Zone.current.createPeriodicTimer(duration, callback);
}
return Zone.current.createPeriodicTimer(duration, dart.as(Zone.current.bindUnaryCallback(callback, {runGuarded: true}), dart.throw_("Unimplemented type (Timer) → void")));
}
static run(callback) {
new Timer(core.Duration.ZERO, callback);
}
static [_createTimer](duration, callback) {
let milliseconds = duration.inMilliseconds;
if (dart.notNull(milliseconds) < 0)
milliseconds = 0;
return new _isolate_helper.TimerImpl(milliseconds, callback);
}
static [_createPeriodicTimer](duration, callback) {
let milliseconds = duration.inMilliseconds;
if (dart.notNull(milliseconds) < 0)
milliseconds = 0;
return new _isolate_helper.TimerImpl.periodic(milliseconds, callback);
}
}
dart.defineNamedConstructor(Timer, 'periodic');
class ZoneCallback extends core.Function {}
class ZoneUnaryCallback extends core.Function {}
class ZoneBinaryCallback extends core.Function {}
class HandleUncaughtErrorHandler extends core.Function {}
class RunHandler extends core.Function {}
class RunUnaryHandler extends core.Function {}
class RunBinaryHandler extends core.Function {}
class RegisterCallbackHandler extends core.Function {}
class RegisterUnaryCallbackHandler extends core.Function {}
class RegisterBinaryCallbackHandler extends core.Function {}
class ErrorCallbackHandler extends core.Function {}
class ScheduleMicrotaskHandler extends core.Function {}
class CreateTimerHandler extends core.Function {}
class CreatePeriodicTimerHandler extends core.Function {}
class PrintHandler extends core.Function {}
class ForkHandler extends core.Function {}
class _ZoneFunction extends core.Object {
_ZoneFunction(zone, func) {
this.zone = zone;
this.function = func;
}
}
class ZoneSpecification extends core.Object {
ZoneSpecification(opts) {
return new _ZoneSpecification(opts);
}
from(other, opts) {
let handleUncaughtError = opts && 'handleUncaughtError' in opts ? opts.handleUncaughtError : null;
let run = opts && 'run' in opts ? opts.run : null;
let runUnary = opts && 'runUnary' in opts ? opts.runUnary : null;
let runBinary = opts && 'runBinary' in opts ? opts.runBinary : null;
let registerCallback = opts && 'registerCallback' in opts ? opts.registerCallback : null;
let registerUnaryCallback = opts && 'registerUnaryCallback' in opts ? opts.registerUnaryCallback : null;
let registerBinaryCallback = opts && 'registerBinaryCallback' in opts ? opts.registerBinaryCallback : null;
let errorCallback = opts && 'errorCallback' in opts ? opts.errorCallback : null;
let scheduleMicrotask = opts && 'scheduleMicrotask' in opts ? opts.scheduleMicrotask : null;
let createTimer = opts && 'createTimer' in opts ? opts.createTimer : null;
let createPeriodicTimer = opts && 'createPeriodicTimer' in opts ? opts.createPeriodicTimer : null;
let print = opts && 'print' in opts ? opts.print : null;
let fork = opts && 'fork' in opts ? opts.fork : null;
return new ZoneSpecification({handleUncaughtError: dart.as(handleUncaughtError != null ? handleUncaughtError : other.handleUncaughtError, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, dynamic, StackTrace) → dynamic")), run: dart.as(run != null ? run : other.run, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, () → dynamic) → dynamic")), runUnary: dart.as(runUnary != null ? runUnary : other.runUnary, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, (dynamic) → dynamic, dynamic) → dynamic")), runBinary: dart.as(runBinary != null ? runBinary : other.runBinary, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, (dynamic, dynamic) → dynamic, dynamic, dynamic) → dynamic")), registerCallback: dart.as(registerCallback != null ? registerCallback : other.registerCallback, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, () → dynamic) → ZoneCallback")), registerUnaryCallback: dart.as(registerUnaryCallback != null ? registerUnaryCallback : other.registerUnaryCallback, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, (dynamic) → dynamic) → ZoneUnaryCallback")), registerBinaryCallback: dart.as(registerBinaryCallback != null ? registerBinaryCallback : other.registerBinaryCallback, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, (dynamic, dynamic) → dynamic) → ZoneBinaryCallback")), errorCallback: dart.as(errorCallback != null ? errorCallback : other.errorCallback, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, Object, StackTrace) → AsyncError")), scheduleMicrotask: dart.as(scheduleMicrotask != null ? scheduleMicrotask : other.scheduleMicrotask, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, () → dynamic) → void")), createTimer: dart.as(createTimer != null ? createTimer : other.createTimer, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, Duration, () → void) → Timer")), createPeriodicTimer: dart.as(createPeriodicTimer != null ? createPeriodicTimer : other.createPeriodicTimer, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, Duration, (Timer) → void) → Timer")), print: dart.as(print != null ? print : other.print, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, String) → void")), fork: dart.as(fork != null ? fork : other.fork, dart.throw_("Unimplemented type (Zone, ZoneDelegate, Zone, ZoneSpecification, Map<dynamic, dynamic>) → Zone"))});
}
}
dart.defineNamedConstructor(ZoneSpecification, 'from');
class _ZoneSpecification extends core.Object {
_ZoneSpecification(opts) {
let handleUncaughtError = opts && 'handleUncaughtError' in opts ? opts.handleUncaughtError : null;
let run = opts && 'run' in opts ? opts.run : null;
let runUnary = opts && 'runUnary' in opts ? opts.runUnary : null;
let runBinary = opts && 'runBinary' in opts ? opts.runBinary : null;
let registerCallback = opts && 'registerCallback' in opts ? opts.registerCallback : null;
let registerUnaryCallback = opts && 'registerUnaryCallback' in opts ? opts.registerUnaryCallback : null;
let registerBinaryCallback = opts && 'registerBinaryCallback' in opts ? opts.registerBinaryCallback : null;
let errorCallback = opts && 'errorCallback' in opts ? opts.errorCallback : null;
let scheduleMicrotask = opts && 'scheduleMicrotask' in opts ? opts.scheduleMicrotask : null;
let createTimer = opts && 'createTimer' in opts ? opts.createTimer : null;
let createPeriodicTimer = opts && 'createPeriodicTimer' in opts ? opts.createPeriodicTimer : null;
let print = opts && 'print' in opts ? opts.print : null;
let fork = opts && 'fork' in opts ? opts.fork : null;
this.handleUncaughtError = handleUncaughtError;
this.run = run;
this.runUnary = runUnary;
this.runBinary = runBinary;
this.registerCallback = registerCallback;
this.registerUnaryCallback = registerUnaryCallback;
this.registerBinaryCallback = registerBinaryCallback;
this.errorCallback = errorCallback;
this.scheduleMicrotask = scheduleMicrotask;
this.createTimer = createTimer;
this.createPeriodicTimer = createPeriodicTimer;
this.print = print;
this.fork = fork;
}
}
_ZoneSpecification[dart.implements] = () => [ZoneSpecification];
class ZoneDelegate extends core.Object {}
let _$ = Symbol('_');
class Zone extends core.Object {
[_$]() {
}
static get current() {
return Zone[_current];
}
static [_enter](zone) {
dart.assert(zone != null);
dart.assert(!dart.notNull(core.identical(zone, Zone[_current])));
let previous = Zone[_current];
Zone[_current] = zone;
return previous;
}
static [_leave](previous) {
dart.assert(previous != null);
Zone[_current] = previous;
}
}
dart.defineNamedConstructor(Zone, _$);
Zone.ROOT = _ROOT_ZONE;
Zone._current = _ROOT_ZONE;
let _delegate = Symbol('_delegate');
// Function _parentDelegate: (_Zone) → ZoneDelegate
function _parentDelegate(zone) {
if (zone.parent == null)
return null;
return zone.parent[_delegate];
}
let _delegationTarget = Symbol('_delegationTarget');
let _handleUncaughtError = Symbol('_handleUncaughtError');
let _run = Symbol('_run');
let _runUnary = Symbol('_runUnary');
let _runBinary = Symbol('_runBinary');
let _registerCallback = Symbol('_registerCallback');
let _registerUnaryCallback = Symbol('_registerUnaryCallback');
let _registerBinaryCallback = Symbol('_registerBinaryCallback');
let _errorCallback = Symbol('_errorCallback');
let _scheduleMicrotask = Symbol('_scheduleMicrotask');
let _print = Symbol('_print');
let _fork = Symbol('_fork');
class _ZoneDelegate extends core.Object {
_ZoneDelegate(delegationTarget) {
this[_delegationTarget] = delegationTarget;
}
handleUncaughtError(zone, error, stackTrace) {
let implementation = this[_delegationTarget][_handleUncaughtError];
let implZone = implementation.zone;
return dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, error, stackTrace);
}
run(zone, f) {
let implementation = this[_delegationTarget][_run];
let implZone = implementation.zone;
return dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, f);
}
runUnary(zone, f, arg) {
let implementation = this[_delegationTarget][_runUnary];
let implZone = implementation.zone;
return dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, f, arg);
}
runBinary(zone, f, arg1, arg2) {
let implementation = this[_delegationTarget][_runBinary];
let implZone = implementation.zone;
return dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, f, arg1, arg2);
}
registerCallback(zone, f) {
let implementation = this[_delegationTarget][_registerCallback];
let implZone = implementation.zone;
return dart.as(dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, f), ZoneCallback);
}
registerUnaryCallback(zone, f) {
let implementation = this[_delegationTarget][_registerUnaryCallback];
let implZone = implementation.zone;
return dart.as(dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, f), ZoneUnaryCallback);
}
registerBinaryCallback(zone, f) {
let implementation = this[_delegationTarget][_registerBinaryCallback];
let implZone = implementation.zone;
return dart.as(dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, f), ZoneBinaryCallback);
}
errorCallback(zone, error, stackTrace) {
let implementation = this[_delegationTarget][_errorCallback];
let implZone = implementation.zone;
if (core.identical(implZone, _ROOT_ZONE))
return null;
return dart.as(dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, error, stackTrace), AsyncError);
}
scheduleMicrotask(zone, f) {
let implementation = this[_delegationTarget][_scheduleMicrotask];
let implZone = implementation.zone;
dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, f);
}
createTimer(zone, duration, f) {
let implementation = this[_delegationTarget][_createTimer];
let implZone = implementation.zone;
return dart.as(dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, duration, f), Timer);
}
createPeriodicTimer(zone, period, f) {
let implementation = this[_delegationTarget][_createPeriodicTimer];
let implZone = implementation.zone;
return dart.as(dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, period, f), Timer);
}
print(zone, line) {
let implementation = this[_delegationTarget][_print];
let implZone = implementation.zone;
dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, line);
}
fork(zone, specification, zoneValues) {
let implementation = this[_delegationTarget][_fork];
let implZone = implementation.zone;
return dart.as(dart.dinvokef(implementation.function, implZone, _parentDelegate(implZone), zone, specification, zoneValues), Zone);
}
}
_ZoneDelegate[dart.implements] = () => [ZoneDelegate];
class _Zone extends core.Object {
_Zone() {
}
inSameErrorZone(otherZone) {
return dart.notNull(core.identical(this, otherZone)) || dart.notNull(core.identical(this.errorZone, otherZone.errorZone));
}
}
_Zone[dart.implements] = () => [Zone];
let _delegateCache = Symbol('_delegateCache');
let _map = Symbol('_map');
class _CustomZone extends _Zone {
get [_delegate]() {
if (this[_delegateCache] != null)
return this[_delegateCache];
this[_delegateCache] = new _ZoneDelegate(this);
return this[_delegateCache];
}
_CustomZone(parent, specification, map) {
this.parent = parent;
this[_map] = map;
this[_runUnary] = null;
this[_run] = null;
this[_runBinary] = null;
this[_registerCallback] = null;
this[_registerUnaryCallback] = null;
this[_registerBinaryCallback] = null;
this[_errorCallback] = null;
this[_scheduleMicrotask] = null;
this[_createTimer] = null;
this[_createPeriodicTimer] = null;
this[_print] = null;
this[_fork] = null;
this[_handleUncaughtError] = null;
this[_delegateCache] = null;
super._Zone();
this[_run] = specification.run != null ? new _ZoneFunction(this, specification.run) : this.parent[_run];
this[_runUnary] = specification.runUnary != null ? new _ZoneFunction(this, specification.runUnary) : this.parent[_runUnary];
this[_runBinary] = specification.runBinary != null ? new _ZoneFunction(this, specification.runBinary) : this.parent[_runBinary];
this[_registerCallback] = specification.registerCallback != null ? new _ZoneFunction(this, specification.registerCallback) : this.parent[_registerCallback];
this[_registerUnaryCallback] = specification.registerUnaryCallback != null ? new _ZoneFunction(this, specification.registerUnaryCallback) : this.parent[_registerUnaryCallback];
this[_registerBinaryCallback] = specification.registerBinaryCallback != null ? new _ZoneFunction(this, specification.registerBinaryCallback) : this.parent[_registerBinaryCallback];
this[_errorCallback] = specification.errorCallback != null ? new _ZoneFunction(this, specification.errorCallback) : this.parent[_errorCallback];
this[_scheduleMicrotask] = specification.scheduleMicrotask != null ? new _ZoneFunction(this, specification.scheduleMicrotask) : this.parent[_scheduleMicrotask];
this[_createTimer] = specification.createTimer != null ? new _ZoneFunction(this, specification.createTimer) : this.parent[_createTimer];
this[_createPeriodicTimer] = specification.createPeriodicTimer != null ? new _ZoneFunction(this, specification.createPeriodicTimer) : this.parent[_createPeriodicTimer];
this[_print] = specification.print != null ? new _ZoneFunction(this, specification.print) : this.parent[_print];
this[_fork] = specification.fork != null ? new _ZoneFunction(this, specification.fork) : this.parent[_fork];
this[_handleUncaughtError] = specification.handleUncaughtError != null ? new _ZoneFunction(this, specification.handleUncaughtError) : this.parent[_handleUncaughtError];
}
get errorZone() {
return this[_handleUncaughtError].zone;
}
runGuarded(f) {
try {
return this.run(f);
} catch (e) {
let s = dart.stackTrace(e);
return this.handleUncaughtError(e, s);
}
}
runUnaryGuarded(f, arg) {
try {
return this.runUnary(f, arg);
} catch (e) {
let s = dart.stackTrace(e);
return this.handleUncaughtError(e, s);
}
}
runBinaryGuarded(f, arg1, arg2) {
try {
return this.runBinary(f, arg1, arg2);
} catch (e) {
let s = dart.stackTrace(e);
return this.handleUncaughtError(e, s);
}
}
bindCallback(f, opts) {
let runGuarded = opts && 'runGuarded' in opts ? opts.runGuarded : true;
let registered = this.registerCallback(f);
if (runGuarded) {
return (() => this.runGuarded(registered)).bind(this);
} else {
return (() => this.run(registered)).bind(this);
}
}
bindUnaryCallback(f, opts) {
let runGuarded = opts && 'runGuarded' in opts ? opts.runGuarded : true;
let registered = this.registerUnaryCallback(f);
if (runGuarded) {
return ((arg) => this.runUnaryGuarded(registered, arg)).bind(this);
} else {
return ((arg) => this.runUnary(registered, arg)).bind(this);
}
}
bindBinaryCallback(f, opts) {
let runGuarded = opts && 'runGuarded' in opts ? opts.runGuarded : true;
let registered = this.registerBinaryCallback(f);
if (runGuarded) {
return ((arg1, arg2) => this.runBinaryGuarded(registered, arg1, arg2)).bind(this);
} else {
return ((arg1, arg2) => this.runBinary(registered, arg1, arg2)).bind(this);
}
}
get(key) {
let result = this[_map].get(key);
if (dart.notNull(result != null) || dart.notNull(this[_map].containsKey(key)))
return result;
if (this.parent != null) {
let value = this.parent.get(key);
if (value != null) {
this[_map].set(key, value);
}
return value;
}
dart.assert(dart.equals(this, _ROOT_ZONE));
return null;
}
handleUncaughtError(error, stackTrace) {
let implementation = this[_handleUncaughtError];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, error, stackTrace);
}
fork(opts) {
let specification = opts && 'specification' in opts ? opts.specification : null;
let zoneValues = opts && 'zoneValues' in opts ? opts.zoneValues : null;
let implementation = this[_fork];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.as(dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, specification, zoneValues), Zone);
}
run(f) {
let implementation = this[_run];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, f);
}
runUnary(f, arg) {
let implementation = this[_runUnary];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, f, arg);
}
runBinary(f, arg1, arg2) {
let implementation = this[_runBinary];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, f, arg1, arg2);
}
registerCallback(f) {
let implementation = this[_registerCallback];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.as(dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, f), ZoneCallback);
}
registerUnaryCallback(f) {
let implementation = this[_registerUnaryCallback];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.as(dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, f), ZoneUnaryCallback);
}
registerBinaryCallback(f) {
let implementation = this[_registerBinaryCallback];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.as(dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, f), ZoneBinaryCallback);
}
errorCallback(error, stackTrace) {
let implementation = this[_errorCallback];
dart.assert(implementation != null);
let implementationZone = implementation.zone;
if (core.identical(implementationZone, _ROOT_ZONE))
return null;
let parentDelegate = _parentDelegate(dart.as(implementationZone, _Zone));
return dart.as(dart.dinvokef(implementation.function, implementationZone, parentDelegate, this, error, stackTrace), AsyncError);
}
scheduleMicrotask(f) {
let implementation = this[_scheduleMicrotask];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, f);
}
createTimer(duration, f) {
let implementation = this[_createTimer];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.as(dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, duration, f), Timer);
}
createPeriodicTimer(duration, f) {
let implementation = this[_createPeriodicTimer];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.as(dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, duration, f), Timer);
}
print(line) {
let implementation = this[_print];
dart.assert(implementation != null);
let parentDelegate = _parentDelegate(implementation.zone);
return dart.dinvokef(implementation.function, implementation.zone, parentDelegate, this, line);
}
}
// Function _rootHandleUncaughtError: (Zone, ZoneDelegate, Zone, dynamic, StackTrace) → void
function _rootHandleUncaughtError(self, parent, zone, error, stackTrace) {
_schedulePriorityAsyncCallback(() => {
throw new _UncaughtAsyncError(error, stackTrace);
});
}
// Function _rootRun: (Zone, ZoneDelegate, Zone, () → dynamic) → dynamic
function _rootRun(self, parent, zone, f) {
if (dart.equals(Zone[_current], zone))
return f();
let old = Zone[_enter](zone);
try {
return f();
} finally {
Zone[_leave](old);
}
}
// Function _rootRunUnary: (Zone, ZoneDelegate, Zone, (dynamic) → dynamic, dynamic) → dynamic
function _rootRunUnary(self, parent, zone, f, arg) {
if (dart.equals(Zone[_current], zone))
return dart.dinvokef(f, arg);
let old = Zone[_enter](zone);
try {
return dart.dinvokef(f, arg);
} finally {
Zone[_leave](old);
}
}
// Function _rootRunBinary: (Zone, ZoneDelegate, Zone, (dynamic, dynamic) → dynamic, dynamic, dynamic) → dynamic
function _rootRunBinary(self, parent, zone, f, arg1, arg2) {
if (dart.equals(Zone[_current], zone))
return dart.dinvokef(f, arg1, arg2);
let old = Zone[_enter](zone);
try {
return dart.dinvokef(f, arg1, arg2);
} finally {
Zone[_leave](old);
}
}
// Function _rootRegisterCallback: (Zone, ZoneDelegate, Zone, () → dynamic) → ZoneCallback
function _rootRegisterCallback(self, parent, zone, f) {
return f;
}
// Function _rootRegisterUnaryCallback: (Zone, ZoneDelegate, Zone, (dynamic) → dynamic) → ZoneUnaryCallback
function _rootRegisterUnaryCallback(self, parent, zone, f) {
return f;
}
// Function _rootRegisterBinaryCallback: (Zone, ZoneDelegate, Zone, (dynamic, dynamic) → dynamic) → ZoneBinaryCallback
function _rootRegisterBinaryCallback(self, parent, zone, f) {
return f;
}
// Function _rootErrorCallback: (Zone, ZoneDelegate, Zone, Object, StackTrace) → AsyncError
function _rootErrorCallback(self, parent, zone, error, stackTrace) {
return null;
}
// Function _rootScheduleMicrotask: (Zone, ZoneDelegate, Zone, () → dynamic) → void
function _rootScheduleMicrotask(self, parent, zone, f) {
if (!dart.notNull(core.identical(_ROOT_ZONE, zone))) {
let hasErrorHandler = !dart.notNull(_ROOT_ZONE.inSameErrorZone(zone));
f = zone.bindCallback(f, {runGuarded: hasErrorHandler});
}
_scheduleAsyncCallback(f);
}
// Function _rootCreateTimer: (Zone, ZoneDelegate, Zone, Duration, () → void) → Timer
function _rootCreateTimer(self, parent, zone, duration, callback) {
if (!dart.notNull(core.identical(_ROOT_ZONE, zone))) {
callback = zone.bindCallback(callback);
}
return Timer[_createTimer](duration, callback);
}
// Function _rootCreatePeriodicTimer: (Zone, ZoneDelegate, Zone, Duration, (Timer) → void) → Timer
function _rootCreatePeriodicTimer(self, parent, zone, duration, callback) {
if (!dart.notNull(core.identical(_ROOT_ZONE, zone))) {
callback = dart.as(zone.bindUnaryCallback(callback), dart.throw_("Unimplemented type (Timer) → void"));
}
return Timer[_createPeriodicTimer](duration, callback);
}
// Function _rootPrint: (Zone, ZoneDelegate, Zone, String) → void
function _rootPrint(self, parent, zone, line) {
_internal.printToConsole(line);
}
// Function _printToZone: (String) → void
function _printToZone(line) {
Zone.current.print(line);
}
// Function _rootFork: (Zone, ZoneDelegate, Zone, ZoneSpecification, Map<dynamic, dynamic>) → Zone
function _rootFork(self, parent, zone, specification, zoneValues) {
_internal.printToZone = _printToZone;
if (specification == null) {
specification = new ZoneSpecification();
} else if (!dart.is(specification, _ZoneSpecification)) {
throw new core.ArgumentError("ZoneSpecifications must be instantiated" + " with the provided constructor.");
}
let valueMap = null;
if (zoneValues == null) {
if (dart.is(zone, _Zone)) {
valueMap = zone[_map];
} else {
valueMap = new collection.HashMap();
}
} else {
valueMap = new collection.HashMap.from(zoneValues);
}
return new _CustomZone(dart.as(zone, _Zone), specification, valueMap);
}
class _RootZoneSpecification extends core.Object {
get handleUncaughtError() {
return _rootHandleUncaughtError;
}
get run() {
return _rootRun;
}
get runUnary() {
return _rootRunUnary;
}
get runBinary() {
return _rootRunBinary;
}
get registerCallback() {
return _rootRegisterCallback;
}
get registerUnaryCallback() {
return _rootRegisterUnaryCallback;
}
get registerBinaryCallback() {
return _rootRegisterBinaryCallback;
}
get errorCallback() {
return _rootErrorCallback;
}
get scheduleMicrotask() {
return _rootScheduleMicrotask;
}
get createTimer() {
return _rootCreateTimer;
}
get createPeriodicTimer() {
return _rootCreatePeriodicTimer;
}
get print() {
return _rootPrint;
}
get fork() {
return _rootFork;
}
}
_RootZoneSpecification[dart.implements] = () => [ZoneSpecification];
let _rootMap = Symbol('_rootMap');
let _rootDelegate = Symbol('_rootDelegate');
class _RootZone extends _Zone {
_RootZone() {
super._Zone();
}
get [_run]() {
return new _ZoneFunction(_ROOT_ZONE, _rootRun);
}
get [_runUnary]() {
return new _ZoneFunction(_ROOT_ZONE, _rootRunUnary);
}
get [_runBinary]() {
return new _ZoneFunction(_ROOT_ZONE, _rootRunBinary);
}
get [_registerCallback]() {
return new _ZoneFunction(_ROOT_ZONE, _rootRegisterCallback);
}
get [_registerUnaryCallback]() {
return new _ZoneFunction(_ROOT_ZONE, _rootRegisterUnaryCallback);
}
get [_registerBinaryCallback]() {
return new _ZoneFunction(_ROOT_ZONE, _rootRegisterBinaryCallback);
}
get [_errorCallback]() {
return new _ZoneFunction(_ROOT_ZONE, _rootErrorCallback);
}
get [_scheduleMicrotask]() {
return new _ZoneFunction(_ROOT_ZONE, _rootScheduleMicrotask);
}
get [_createTimer]() {
return new _ZoneFunction(_ROOT_ZONE, _rootCreateTimer);
}
get [_createPeriodicTimer]() {
return new _ZoneFunction(_ROOT_ZONE, _rootCreatePeriodicTimer);
}
get [_print]() {
return new _ZoneFunction(_ROOT_ZONE, _rootPrint);
}
get [_fork]() {
return new _ZoneFunction(_ROOT_ZONE, _rootFork);
}
get [_handleUncaughtError]() {
return new _ZoneFunction(_ROOT_ZONE, _rootHandleUncaughtError);
}
get parent() {
return null;
}
get [_map]() {
return _RootZone[_rootMap];
}
get [_delegate]() {
if (_RootZone[_rootDelegate] != null)
return _RootZone[_rootDelegate];
return _RootZone[_rootDelegate] = new _ZoneDelegate(this);
}
get errorZone() {
return this;
}
runGuarded(f) {
try {
if (core.identical(_ROOT_ZONE, Zone[_current])) {
return f();
}
return _rootRun(null, null, this, f);
} catch (e) {
let s = dart.stackTrace(e);
return this.handleUncaughtError(e, s);
}
}
runUnaryGuarded(f, arg) {
try {
if (core.identical(_ROOT_ZONE, Zone[_current])) {
return dart.dinvokef(f, arg);
}
return _rootRunUnary(null, null, this, f, arg);
} catch (e) {
let s = dart.stackTrace(e);
return this.handleUncaughtError(e, s);
}
}
runBinaryGuarded(f, arg1, arg2) {
try {
if (core.identical(_ROOT_ZONE, Zone[_current])) {
return dart.dinvokef(f, arg1, arg2);
}
return _rootRunBinary(null, null, this, f, arg1, arg2);
} catch (e) {
let s = dart.stackTrace(e);
return this.handleUncaughtError(e, s);
}
}
bindCallback(f, opts) {
let runGuarded = opts && 'runGuarded' in opts ? opts.runGuarded : true;
if (runGuarded) {
return (() => this.runGuarded(f)).bind(this);
} else {
return (() => this.run(f)).bind(this);
}
}
bindUnaryCallback(f, opts) {
let runGuarded = opts && 'runGuarded' in opts ? opts.runGuarded : true;
if (runGuarded) {
return ((arg) => this.runUnaryGuarded(f, arg)).bind(this);
} else {
return ((arg) => this.runUnary(f, arg)).bind(this);
}
}
bindBinaryCallback(f, opts) {
let runGuarded = opts && 'runGuarded' in opts ? opts.runGuarded : true;
if (runGuarded) {
return ((arg1, arg2) => this.runBinaryGuarded(f, arg1, arg2)).bind(this);
} else {
return ((arg1, arg2) => this.runBinary(f, arg1, arg2)).bind(this);
}
}
get(key) {
return null;
}
handleUncaughtError(error, stackTrace) {
return _rootHandleUncaughtError(null, null, this, error, stackTrace);
}
fork(opts) {
let specification = opts && 'specification' in opts ? opts.specification : null;
let zoneValues = opts && 'zoneValues' in opts ? opts.zoneValues : null;
return _rootFork(null, null, this, specification, zoneValues);
}
run(f) {
if (core.identical(Zone[_current], _ROOT_ZONE))
return f();
return _rootRun(null, null, this, f);
}
runUnary(f, arg) {
if (core.identical(Zone[_current], _ROOT_ZONE))
return dart.dinvokef(f, arg);
return _rootRunUnary(null, null, this, f, arg);
}
runBinary(f, arg1, arg2) {
if (core.identical(Zone[_current], _ROOT_ZONE))
return dart.dinvokef(f, arg1, arg2);
return _rootRunBinary(null, null, this, f, arg1, arg2);
}
registerCallback(f) {
return f;
}
registerUnaryCallback(f) {
return f;
}
registerBinaryCallback(f) {
return f;
}
errorCallback(error, stackTrace) {
return null;
}
scheduleMicrotask(f) {
_rootScheduleMicrotask(null, null, this, f);
}
createTimer(duration, f) {
return Timer[_createTimer](duration, f);
}
createPeriodicTimer(duration, f) {
return Timer[_createPeriodicTimer](duration, f);
}
print(line) {
_internal.printToConsole(line);
}
}
_RootZone._rootDelegate = null;
dart.defineLazyProperties(_RootZone, {
get _rootMap() {
return new collection.HashMap();
},
set _rootMap(_) {}
});
let _ROOT_ZONE = new _RootZone();
// Function runZoned: (() → dynamic, {zoneValues: Map<dynamic, dynamic>, zoneSpecification: ZoneSpecification, onError: Function}) → dynamic
function runZoned(body, opts) {
let zoneValues = opts && 'zoneValues' in opts ? opts.zoneValues : null;
let zoneSpecification = opts && 'zoneSpecification' in opts ? opts.zoneSpecification : null;
let onError = opts && 'onError' in opts ? opts.onError : null;
let errorHandler = null;
if (onError != null) {
errorHandler = (self, parent, zone, error, stackTrace) => {
try {
if (dart.is(onError, ZoneBinaryCallback)) {
return self.parent.runBinary(onError, error, stackTrace);
}
return self.parent.runUnary(dart.as(onError, dart.throw_("Unimplemented type (dynamic) → dynamic")), error);
} catch (e) {
let s = dart.stackTrace(e);
if (core.identical(e, error)) {
return parent.handleUncaughtError(zone, error, stackTrace);
} else {
return parent.handleUncaughtError(zone, e, s);
}
}
};
}
if (zoneSpecification == null) {
zoneSpecification = new ZoneSpecification({handleUncaughtError: errorHandler});
} else if (errorHandler != null) {
zoneSpecification = new ZoneSpecification.from(zoneSpecification, {handleUncaughtError: errorHandler});
}
let zone = Zone.current.fork({specification: zoneSpecification, zoneValues: zoneValues});
if (onError != null) {
return zone.runGuarded(body);
} else {
return zone.run(body);
}
}
dart.copyProperties(exports, {
get _hasDocument() {
return typeof document == 'object';
}
});
// Exports:
exports.AsyncError = AsyncError;
exports.Stream$ = Stream$;
exports.Stream = Stream;
exports.DeferredLibrary = DeferredLibrary;
exports.DeferredLoadException = DeferredLoadException;
exports.Future$ = Future$;
exports.Future = Future;
exports.TimeoutException = TimeoutException;
exports.Completer$ = Completer$;
exports.Completer = Completer;
exports.scheduleMicrotask = scheduleMicrotask;
exports.StreamSubscription$ = StreamSubscription$;
exports.StreamSubscription = StreamSubscription;
exports.EventSink$ = EventSink$;
exports.EventSink = EventSink;
exports.StreamView$ = StreamView$;
exports.StreamView = StreamView;
exports.StreamConsumer$ = StreamConsumer$;
exports.StreamConsumer = StreamConsumer;
exports.StreamSink$ = StreamSink$;
exports.StreamSink = StreamSink;
exports.StreamTransformer$ = StreamTransformer$;
exports.StreamTransformer = StreamTransformer;
exports.StreamIterator$ = StreamIterator$;
exports.StreamIterator = StreamIterator;
exports.StreamController$ = StreamController$;
exports.StreamController = StreamController;
exports.Timer = Timer;
exports.ZoneCallback = ZoneCallback;
exports.ZoneUnaryCallback = ZoneUnaryCallback;
exports.ZoneBinaryCallback = ZoneBinaryCallback;
exports.HandleUncaughtErrorHandler = HandleUncaughtErrorHandler;
exports.RunHandler = RunHandler;
exports.RunUnaryHandler = RunUnaryHandler;
exports.RunBinaryHandler = RunBinaryHandler;
exports.RegisterCallbackHandler = RegisterCallbackHandler;
exports.RegisterUnaryCallbackHandler = RegisterUnaryCallbackHandler;
exports.RegisterBinaryCallbackHandler = RegisterBinaryCallbackHandler;
exports.ErrorCallbackHandler = ErrorCallbackHandler;
exports.ScheduleMicrotaskHandler = ScheduleMicrotaskHandler;
exports.CreateTimerHandler = CreateTimerHandler;
exports.CreatePeriodicTimerHandler = CreatePeriodicTimerHandler;
exports.PrintHandler = PrintHandler;
exports.ForkHandler = ForkHandler;
exports.ZoneSpecification = ZoneSpecification;
exports.ZoneDelegate = ZoneDelegate;
exports.Zone = Zone;
exports.runZoned = runZoned;
})(async || (async = {}));