6a7d6c385e
Add spaces to make sure dartfmt doesn't destroy bespoke indentation BUG= R=sra@google.com Review-Url: https://codereview.chromium.org/2763823002 .
186 lines
6.2 KiB
Dart
186 lines
6.2 KiB
Dart
// Copyright (c) 2014, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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import "dart:isolate";
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import "dart:async";
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import "package:expect/expect.dart";
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import "package:async_helper/async_helper.dart";
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void toplevel(port, message) { port.send("toplevel:$message"); }
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Function createFuncToplevel() => (p, m) { p.send(m); };
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class C {
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Function initializer;
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Function body;
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C() : initializer = ((p, m) { throw "initializer"; }) {
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body = (p, m) { throw "body"; };
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}
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static void staticFunc(port, message) { port.send("static:$message"); }
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static Function createFuncStatic() => (p, m) { throw "static expr"; };
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void instanceMethod(p, m) { throw "instanceMethod"; }
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Function createFuncMember() => (p, m) { throw "instance expr"; };
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void call(n, p) { throw "C"; }
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}
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class Callable {
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void call(p, m) { p.send(["callable", m]); }
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}
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void main() {
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asyncStart();
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// Sendables are top-level functions and static functions only.
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testSendable("toplevel", toplevel);
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testSendable("static", C.staticFunc);
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// Unsendables are any closure - instance methods or function expression.
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var c = new C();
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testUnsendable("instance method", c.instanceMethod);
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testUnsendable("static context expression", createFuncToplevel());
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testUnsendable("static context expression", C.createFuncStatic());
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testUnsendable("initializer context expression", c.initializer);
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testUnsendable("constructor context expression", c.body);
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testUnsendable("instance method context expression", c.createFuncMember());
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// The result of `toplevel.call` and `staticFunc.call` may or may not be
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// identical to `toplevel` and `staticFunc` respectively. If they are not
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// equal, they may or may not be considered toplevel/static functions anyway,
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// and therefore sendable. The VM and dart2js curretnly disagrees on whether
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// `toplevel` and `toplevel.call` are identical, both allow them to be sent.
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// If this is ever specified to something else, use:
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// testUnsendable("toplevel.call", toplevel.call);
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// testUnsendable("static.call", C.staticFunc.call);
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// instead.
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// These two tests should be considered canaries for accidental behavior
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// change rather than requirements.
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testSendable("toplevel", toplevel.call);
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testSendable("static", C.staticFunc.call);
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// Callable objects are sendable if general objects are (VM yes, dart2js no).
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// It's unspecified whether arbitrary objects can be sent. If it is specified,
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// add a test that `new Callable()` is either sendable or unsendable.
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// The call method of a callable object is a closure holding the object,
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// not a top-level or static function, so it should be blocked, just as
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// a normal method.
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testUnsendable("callable object", new Callable().call);
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asyncEnd();
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return;
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}
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// Create a receive port that expects exactly one message.
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// Pass the message to `callback` and return the sendPort.
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SendPort singleMessagePort(callback) {
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var p;
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p = new RawReceivePort((v) { p.close(); callback(v); });
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return p.sendPort;
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}
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// A singleMessagePort that expects the message to be a specific value.
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SendPort expectMessagePort(message) {
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asyncStart();
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return singleMessagePort((v) {
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Expect.equals(message, v);
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asyncEnd();
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});
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}
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void testSendable(name, func) {
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// Function as spawn message.
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Isolate.spawn(callFunc, [func, expectMessagePort("$name:spawn"), "spawn"]);
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// Send function to same isolate.
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var reply = expectMessagePort("$name:direct");
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singleMessagePort(callFunc).send([func, reply, "direct"]);
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// Send function to other isolate, call it there.
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reply = expectMessagePort("$name:other isolate");
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callPort().then((p) {
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p.send([func, reply, "other isolate"]);
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});
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// Round-trip function trough other isolate.
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echoPort((roundtripFunc) {
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Expect.identical(func, roundtripFunc, "$name:send through isolate");
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}).then((port) { port.send(func); });
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}
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// Creates a new isolate and a pair of ports that expect a single message
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// to be sent to the other isolate and back to the callback function.
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Future<SendPort> echoPort(callback(value)) {
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Completer completer = new Completer<SendPort>();
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SendPort replyPort = singleMessagePort(callback);
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RawReceivePort initPort;
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initPort = new RawReceivePort((p) {
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completer.complete(p);
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initPort.close();
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});
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return Isolate.spawn(_echo, [replyPort, initPort.sendPort])
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.then((isolate) => completer.future);
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}
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void _echo(msg) {
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var replyPort = msg[0];
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RawReceivePort requestPort;
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requestPort = new RawReceivePort((msg) {
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replyPort.send(msg);
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requestPort.close(); // Single echo only.
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});
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msg[1].send(requestPort.sendPort);
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}
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// Creates other isolate that waits for a single message, `msg`, on the returned
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// port, and executes it as `msg[0](msg[1],msg[2])` in the other isolate.
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Future<SendPort> callPort() {
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Completer completer = new Completer<SendPort>();
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SendPort initPort = singleMessagePort(completer.complete);
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return Isolate.spawn(_call, initPort)
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.then((_) => completer.future);
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}
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void _call(initPort) {
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initPort.send(singleMessagePort(callFunc));
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}
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void testUnsendable(name, func) {
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asyncStart();
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Isolate.spawn(nop, func).then((v) => throw "allowed spawn direct?",
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onError: (e,s){ asyncEnd(); });
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asyncStart();
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Isolate.spawn(nop, [func]).then((v) => throw "allowed spawn wrapped?",
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onError: (e,s){ asyncEnd(); });
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asyncStart();
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var noReply = new RawReceivePort((_) { throw "Unexpected message: $_"; });
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Expect.throws(() {
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noReply.sendPort.send(func);
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}, null, "send direct");
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Expect.throws(() {
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noReply.sendPort.send([func]);
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}, null, "send wrapped");
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scheduleMicrotask(() {
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noReply.close();
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asyncEnd();
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});
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// Try sending through other isolate.
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asyncStart();
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echoPort((v) { Expect.equals(0, v); })
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.then((p) {
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try {
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p.send(func);
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} finally {
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p.send(0); // Closes echo port.
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}
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})
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.then((p) => throw "unreachable 2",
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onError: (e, s) {asyncEnd();});
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}
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void nop(_) {}
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void callFunc(message) {
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message[0](message[1], message[2]);
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}
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