8aa0a2cd04
R=johnniwinther@google.com Review URL: https://codereview.chromium.org//95123002 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@30769 260f80e4-7a28-3924-810f-c04153c831b5
163 lines
5.9 KiB
Dart
163 lines
5.9 KiB
Dart
// Copyright (c) 2013, 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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// This tests uses the multi-test "ok" feature:
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// none: Trimmed behaviour. Passing on the VM.
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// 01: Trimmed version for dart2js.
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// 02: Full version passing in the VM.
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//
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// TODO(rmacnak,ahe): Remove multi-test when VM and dart2js are on par.
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library test.class_equality_test;
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import 'dart:mirrors';
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import 'package:expect/expect.dart';
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class A<T> {}
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class B extends A<int> {}
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class BadEqualityHash {
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int count = 0;
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bool operator ==(other) => true;
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int get hashCode => count++;
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}
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typedef bool Predicate(Object o);
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Predicate somePredicate;
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checkEquality(List<Map> equivalenceClasses) {
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for (var equivalenceClass in equivalenceClasses) {
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equivalenceClass.forEach((name, member) {
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equivalenceClass.forEach((otherName, otherMember) {
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// Reflexivity, symmetry and transitivity.
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Expect.equals(member,
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otherMember,
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"$name == $otherName");
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Expect.equals(member.hashCode,
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otherMember.hashCode,
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"$name.hashCode == $otherName.hashCode");
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});
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for (var otherEquivalenceClass in equivalenceClasses) {
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if (otherEquivalenceClass == equivalenceClass) continue;
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otherEquivalenceClass.forEach((otherName, otherMember) {
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Expect.notEquals(member,
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otherMember,
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"$name != $otherName"); // Exclusion.
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// Hash codes may or may not be equal.
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});
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}
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});
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}
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}
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void subroutine() {
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}
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main() {
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LibraryMirror thisLibrary =
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currentMirrorSystem()
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.findLibrary(const Symbol('test.class_equality_test'));
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var o1 = new Object();
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var o2 = new Object();
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var badEqualityHash1 = new BadEqualityHash();
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var badEqualityHash2 = new BadEqualityHash();
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checkEquality([
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{'reflect(o1)' : reflect(o1),
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'reflect(o1), again' : reflect(o1)},
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{'reflect(o2)' : reflect(o2),
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'reflect(o2), again' : reflect(o2)},
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{'reflect(badEqualityHash1)' : reflect(badEqualityHash1),
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'reflect(badEqualityHash1), again' : reflect(badEqualityHash1)},
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{'reflect(badEqualityHash2)' : reflect(badEqualityHash2),
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'reflect(badEqualityHash2), again' : reflect(badEqualityHash2)},
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{'reflect(true)' : reflect(true),
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'reflect(true), again' : reflect(true)},
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{'reflect(false)' : reflect(false),
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'reflect(false), again' : reflect(false)},
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{'reflect(null)' : reflect(null),
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'reflect(null), again' : reflect(null)},
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{'reflect(3.5+4.5)' : reflect(3.5+4.5),
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'reflect(6.5+1.5)' : reflect(6.5+1.5)},
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{'reflect(3+4)' : reflect(3+4),
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'reflect(6+1)' : reflect(6+1)},
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{'reflect("foo")' : reflect("foo"),
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'reflect("foo"), again' : reflect("foo")},
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{'currentMirrorSystem().voidType' : currentMirrorSystem().voidType}, /// 01: ok
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{'currentMirrorSystem().voidType' : currentMirrorSystem().voidType, /// 02: ok
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'thisLibrary.declarations[#subroutine].returnType' : /// 02: ok
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(thisLibrary.declarations[#subroutine] as MethodMirror).returnType}, /// 02: ok
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{'currentMirrorSystem().dynamicType' : currentMirrorSystem().dynamicType,
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'thisLibrary.declarations[#main].returnType' :
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(thisLibrary.declarations[#main] as MethodMirror).returnType},
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{'reflectClass(A)' : reflectClass(A),
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'thisLibrary.declarations[#A]' : thisLibrary.declarations[#A],
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'reflect(new A<int>()).type.originalDeclaration' :
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reflect(new A<int>()).type.originalDeclaration},
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{'reflectClass(B).superclass' : reflectClass(B).superclass,
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'reflect(new A<int>()).type' : reflect(new A<int>()).type},
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{'reflectClass(B)' : reflectClass(B),
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'thisLibrary.declarations[#B]' : thisLibrary.declarations[#B],
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'reflect(new B()).type' : reflect(new B()).type},
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{'reflectClass(BadEqualityHash).declarations[#==]'
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: reflectClass(BadEqualityHash).declarations[#==],
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'reflect(new BadEqualityHash()).type.declarations[#==]'
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: reflect(new BadEqualityHash()).type.declarations[#==]},
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{'reflectClass(BadEqualityHash).declarations[#==].parameters[0]'
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: (reflectClass(BadEqualityHash).
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declarations[#==] as MethodMirror).parameters[0],
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'reflect(new BadEqualityHash()).type.declarations[#==].parameters[0]'
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: (reflect(new BadEqualityHash()).type.
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declarations[#==] as MethodMirror).parameters[0]},
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{'reflectClass(BadEqualityHash).declarations[#count]'
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: reflectClass(BadEqualityHash).declarations[#count],
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'reflect(new BadEqualityHash()).type.declarations[#count]'
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: reflect(new BadEqualityHash()).type.declarations[#count]},
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{'reflectType(Predicate)' : reflectType(Predicate), /// 02: ok
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'thisLibrary.declarations[#somePredicate].type' /// 02: ok
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: (thisLibrary.declarations[#somePredicate] as VariableMirror).type}, /// 02: ok
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{'reflectType(Predicate).referent' : (reflectType(Predicate) as TypedefMirror).referent, /// 02: ok
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'thisLibrary.declarations[#somePredicate].type.referent' /// 02: ok
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: ((thisLibrary.declarations[#somePredicate] as VariableMirror).type as TypedefMirror).referent}, /// 02: ok
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{'reflectClass(A).typeVariables.single'
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: reflectClass(A).typeVariables.single,
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'reflect(new A<int>()).type.originalDeclaration.typeVariables.single'
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: reflect(new A<int>()).type.originalDeclaration.typeVariables.single},
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{'currentMirrorSystem()' : currentMirrorSystem()},
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{'currentMirrorSystem().isolate' : currentMirrorSystem().isolate},
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{'thisLibrary' : thisLibrary,
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'reflectClass(A).owner' : reflectClass(A).owner,
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'reflectClass(B).owner' : reflectClass(B).owner,
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'reflect(new A()).type.owner' : reflect(new A()).type.owner,
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'reflect(new B()).type.owner' : reflect(new B()).type.owner},
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]);
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}
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