40b6741778
This CL modifies the Dart source used from test.py such that it takes `syntax error` into account as an expected outcome in test files (so that we can have `//# 01: syntax error` with a similar meaning as `//# 01: compile-time error`). For all tools except the spec_parser, `syntax error` is the same outcome as `compile-time error`; that is, nobody else will see the difference. For the spec_parser, `syntax error` is the outcome where parsing has failed; `compile-time error` is taken to mean some other compile-time error, i.e., the spec_parser is expected to _succeed_ when the expected outcome is `compile-time error`. Test files in language and language_2 have been adjusted to use the outcome `syntax error` where appropriate. The status files in language and language_2 for the spec_parser have been adjusted such that they fit all the new `syntax error` outcomes in test files. Other status files have been adjusted in a few cases where tests were corrected (because a compile-time error which was clearly not intended to be a syntax error turned out to be caused by a typo, which means that the actual compile-time error has never been tested). The spec grammar Dart.g was adjusted in a few cases, when some bugs were discovered. In particular, the treatment of Function has been changed: It is now known by the parser that Function does not take any type arguments. This makes no difference for developers, because they cannot declare a type named Function anyway, but it means that a number of tricky parsing issues were resolved. Dart.g was also adjusted to allow `qualified` to contain three identifiers, which is an old bug (preventing things like metadata on the form `@p.C.myConst`). Change-Id: Ie420887d45c882ef97c84143365219f8aa0d2933 Reviewed-on: https://dart-review.googlesource.com/18262 Commit-Queue: Erik Ernst <eernst@google.com> Reviewed-by: Bob Nystrom <rnystrom@google.com> Reviewed-by: Lasse R.H. Nielsen <lrn@google.com>
132 lines
3.9 KiB
Dart
132 lines
3.9 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 'package:expect/expect.dart';
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import 'dart:async';
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topLevelFunction() async {}
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Future<int> topLevelWithParameter(int a) async {
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return 7 + a;
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}
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int //# type-mismatch2: static type warning, dynamic type error
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topLevelWithParameterWrongType(int a) async {
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return 7 + a;
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}
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var what = 'async getter';
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Future<String> get topLevelGetter async {
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return 'I want to be an ${what}';
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}
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class A {
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static int staticVar = 1;
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static staticMethod(int param) async => staticVar + param;
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static get staticGetter async => staticVar + 3;
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int _x;
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A(this._x);
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A.fail() async; // //# constructor2: syntax error
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factory A.create() async {return null; } //# constructor3: compile-time error
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int someMethod(int param1, int param2, int param3) async => _x + param2; //# type-mismatch3: static type warning, dynamic type error
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int get getter async { return 5 + _x; } //# type-mismatch4: static type warning, dynamic type error
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operator +(A other) async {
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return new A(_x + other._x);
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}
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get value => _x;
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}
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class B {
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final _y;
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const B._internal(this._y);
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const factory B.createConst(int y) async = A._internal; // //# constructor4: syntax error
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B() : _y = null;
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set dontDoThat(value) async {} // //# setter1: compile-time error
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}
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main() {
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var asyncReturn;
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asyncReturn = topLevelFunction();
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Expect.isTrue(asyncReturn is Future);
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int a1 = topLevelWithParameter(2); // //# type-mismatch1: static type warning, dynamic type error
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int a2 = topLevelWithParameterWrongType(2); // //# type-mismatch2: continued
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asyncReturn = topLevelWithParameter(4);
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Expect.isTrue(asyncReturn is Future);
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asyncReturn.then((int result) => Expect.equals(result, 11));
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asyncReturn = topLevelGetter;
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Expect.isTrue(asyncReturn is Future);
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asyncReturn.then((String result) =>
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Expect.stringEquals(result, 'I want to be an async getter'));
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asyncReturn = A.staticMethod(2);
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Expect.isTrue(asyncReturn is Future);
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asyncReturn.then((int result) => Expect.equals(result, 3));
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asyncReturn = A.staticGetter;
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Expect.isTrue(asyncReturn is Future);
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asyncReturn.then((int result) => Expect.equals(result, 4));
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A a = new A(13);
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asyncReturn = a.someMethod(1,2,3); // //# type-mismatch3: continued
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Expect.isTrue(asyncReturn is Future); // //# type-mismatch3: continued
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asyncReturn.then((int result) => Expect.equals(result, 15)); // //# type-mismatch3: continued
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asyncReturn = a.getter; // //# type-mismatch4: continued
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Expect.isTrue(asyncReturn is Future); // //# type-mismatch4: continued
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asyncReturn.then((int result) => Expect.equals(result, 18)); // //# type-mismatch4: continued
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var b = new A(9);
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asyncReturn = a + b;
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Expect.isTrue(asyncReturn is Future);
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asyncReturn.then((A result) => Expect.equals(result.value, 22));
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var foo = 17;
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bar(int p1, p2) async {
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var z = 8;
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return p2 + z + foo;
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}
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asyncReturn = bar(1, 2);
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Expect.isTrue(asyncReturn is Future);
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asyncReturn.then((int result) => Expect.equals(result, 27));
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var moreNesting = (int shadowP1, String p2, num p3) {
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var z = 3;
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aa(int shadowP1) async {
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return foo + z + p3 + shadowP1;
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}
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return aa(6);
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};
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asyncReturn = moreNesting(1, "ignore", 2);
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Expect.isTrue(asyncReturn is Future);
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asyncReturn.then((int result) => Expect.equals(result, 28));
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var b1 = const B.createConst(4); // //# constructor4: compile-time error
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var b2 = new B();
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b2.dontDoThat = 4; // //# setter1: compile-time error
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var checkAsync = (var someFunc) {
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var toTest = someFunc();
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Expect.isTrue(toTest is Future);
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toTest.then((int result) => Expect.equals(result, 4));
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};
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checkAsync(() async => 4);
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new A.fail(); //# constructor2: continued
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new A.create(); //# constructor3: continued
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}
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