Files
sdk/tests/isolate/handle_error3_test.dart
T
lrn@google.com 08fbb2dde8 Add an error listener on isolates.
While any error listener is attached to an isolate, uncaught errors are reported to the listener through his supplied sendPort.

The current format for the error is
  [error.toString(), stack == null ? null : stack.toString()]
This is wrapped on the receiving side.

The isolate exposes the errors as a broadcast stream of error events.

R=floitsch@google.com

Review URL: https://codereview.chromium.org//169703002

git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@36290 260f80e4-7a28-3924-810f-c04153c831b5
2014-05-19 10:55:08 +00:00

117 lines
3.3 KiB
Dart

// Copyright (c) 2014, the Dart project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
library handle_error_test;
import "dart:isolate";
import "dart:async";
import "package:async_helper/async_helper.dart";
import "package:expect/expect.dart";
isomain1(replyPort) {
RawReceivePort port = new RawReceivePort();
port.handler = (v) {
switch (v) {
case 0:
replyPort.send(42);
break;
case 1:
throw new ArgumentError("whoops");
case 2:
throw new RangeError.value(37);
case 3:
port.close();
}
};
replyPort.send(port.sendPort);
}
/// Do Isolate.spawn(entry) and get a sendPort from the isolate that it
/// expects commands on.
/// The isolate has errors set to non-fatal.
/// Returns a list of `[isolate, commandPort]` in a future.
Future spawn(entry) {
ReceivePort reply = new ReceivePort();
Future isolate = Isolate.spawn(entry, reply.sendPort, paused: true);
return isolate.then((Isolate isolate) {
isolate.setErrorsFatal(false);
isolate.resume(isolate.pauseCapability);
Future result = reply.first.then((sendPort) {
return [isolate, sendPort];
});
return result;
});
}
main(){
asyncStart();
asyncStart();
RawReceivePort reply = new RawReceivePort(null);
RawReceivePort reply2 = new RawReceivePort(null);
// Create two isolates waiting for commands, with errors non-fatal.
Future iso1 = spawn(isomain1);
Future iso2 = spawn(isomain1);
Future.wait([iso1, iso2]).then((l) {
var isolate1 = l[0][0];
var sendPort1 = l[0][1];
var isolate2 = l[1][0];
var sendPort2 = l[1][1];
// Capture errors from one isolate as stream.
Stream errors = isolate1.errors; // Broadcast stream, never a done message.
int state = 1;
var subscription;
subscription = errors.listen(null, onError: (error, stack) {
switch (state) {
case 1:
Expect.equals(new ArgumentError("whoops").toString(), "$error");
state++;
break;
case 2:
Expect.equals(new RangeError.value(37).toString(), "$error");
state++;
reply.close();
subscription.cancel();
asyncEnd();
break;
default:
throw "Bad state for error: $state: $error";
}
});
// Capture errors from other isolate as raw messages.
RawReceivePort errorPort2 = new RawReceivePort();
int state2 = 1;
errorPort2.handler = (message) {
String error = message[0];
String stack = message[1];
switch (state2) {
case 1:
Expect.equals(new ArgumentError("whoops").toString(), "$error");
state2++;
break;
case 2:
Expect.equals(new RangeError.value(37).toString(), "$error");
state2++;
reply.close();
isolate2.removeErrorListener(errorPort2.sendPort);
errorPort2.close();
asyncEnd();
break;
default:
throw "Bad state-2 for error: $state: $error";
}
};
isolate2.addErrorListener(errorPort2.sendPort);
sendPort1.send(0);
sendPort2.send(0);
sendPort1.send(1);
sendPort2.send(1);
sendPort1.send(2);
sendPort2.send(2);
sendPort1.send(3);
sendPort2.send(3);
});
}