14011f47e3
They're back from the grave, and ready to party! Change-Id: I088134a9be7ecabf1fbf751c015a656a15cabff9 Reviewed-on: https://dart-review.googlesource.com/12821 Commit-Queue: Bob Nystrom <rnystrom@google.com> Reviewed-by: William Hesse <whesse@google.com>
180 lines
5.8 KiB
Dart
180 lines
5.8 KiB
Dart
// Copyright (c) 2015, 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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// Verify that the static type of a ??= b is the least upper bound of the
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// static types of a and b.
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import "package:expect/expect.dart";
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// Determine whether the VM is running in checked mode.
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bool get checkedMode {
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try {
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var x = 'foo';
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int y = x;
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return false;
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} catch (_) {
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return true;
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}
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}
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noMethod(e) => e is NoSuchMethodError;
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bad() {
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Expect.fail('Should not be executed');
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}
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class A {
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String a;
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}
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class B extends A {
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String b;
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}
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class C extends A {
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String c;
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}
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A get a => null;
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void set a(A value) {}
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B get b => null;
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void set b(B value) {}
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class ClassWithStaticGetters {
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static A get a => null;
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static void set a(A value) {}
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static B get b => null;
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static void set b(B value) {}
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}
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class ClassWithInstanceGetters {
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A get a => null;
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void set a(A value) {}
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B get b => null;
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void set b(B value) {}
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}
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class DerivedClass extends ClassWithInstanceGetters {
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dynamic get a => bad();
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void set a(dynamic value) {
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bad();
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}
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dynamic get b => bad();
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void set b(dynamic value) {
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bad();
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}
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void derivedTest() {
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// The static type of super.v ??= e is the LUB of the static types of
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// super.v and e.
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(super.a ??= new A()).a; //# 01: ok
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Expect.throws(() => (super.a ??= new A()).b, noMethod); //# 02: static type warning
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(super.a ??= new B()).a; //# 03: ok
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(super.a ??= new B()).b; //# 04: static type warning
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if (!checkedMode) {
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(super.b ??= new A()).a; //# 05: ok
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Expect.throws(() => (super.b ??= new A()).b, noMethod); //# 06: static type warning
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// Exactly the same static warnings that would be caused by super.v = e
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// are also generated in the case of super.v ??= e.
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super.b ??= new C(); //# 07: static type warning
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}
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}
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}
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main() {
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// Make sure the "none" test fails if "??=" is not implemented. This makes
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// status files easier to maintain.
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var _;
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_ ??= null;
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new DerivedClass().derivedTest();
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// The static type of v ??= e is the LUB of the static types of v and e.
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(a ??= new A()).a; //# 08: ok
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Expect.throws(() => (a ??= new A()).b, noMethod); //# 09: static type warning
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(a ??= new B()).a; //# 10: ok
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(a ??= new B()).b; //# 11: static type warning
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if (!checkedMode) {
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(b ??= new A()).a; //# 12: ok
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Expect.throws(() => (b ??= new A()).b, noMethod); //# 13: static type warning
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// Exactly the same static warnings that would be caused by v = e are also
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// generated in the case of v ??= e.
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b ??= new C(); //# 14: static type warning
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}
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// The static type of C.v ??= e is the LUB of the static types of C.v and e.
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(ClassWithStaticGetters.a ??= new A()).a; //# 15: ok
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Expect.throws(() => (ClassWithStaticGetters.a ??= new A()).b, noMethod); //# 16: static type warning
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(ClassWithStaticGetters.a ??= new B()).a; //# 17: ok
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(ClassWithStaticGetters.a ??= new B()).b; //# 18: static type warning
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if (!checkedMode) {
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(ClassWithStaticGetters.b ??= new A()).a; //# 19: ok
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Expect.throws(() => (ClassWithStaticGetters.b ??= new A()).b, noMethod); //# 20: static type warning
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// Exactly the same static warnings that would be caused by C.v = e are
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// also generated in the case of C.v ??= e.
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ClassWithStaticGetters.b ??= new C(); //# 21: static type warning
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}
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// The static type of e1.v ??= e2 is the LUB of the static types of e1.v and
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// e2.
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(new ClassWithInstanceGetters().a ??= new A()).a; //# 22: ok
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Expect.throws(() => (new ClassWithInstanceGetters().a ??= new A()).b, noMethod); //# 23: static type warning
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(new ClassWithInstanceGetters().a ??= new B()).a; //# 24: ok
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(new ClassWithInstanceGetters().a ??= new B()).b; //# 25: static type warning
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if (!checkedMode) {
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(new ClassWithInstanceGetters().b ??= new A()).a; //# 26: ok
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Expect.throws(() => (new ClassWithInstanceGetters().b ??= new A()).b, noMethod); //# 27: static type warning
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// Exactly the same static warnings that would be caused by e1.v = e2 are
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// also generated in the case of e1.v ??= e2.
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new ClassWithInstanceGetters().b ??= new C(); //# 28: static type warning
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}
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// The static type of e1[e2] ??= e3 is the LUB of the static types of e1[e2]
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// and e3.
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((<A>[null])[0] ??= new A()).a; //# 29: ok
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Expect.throws(() => ((<A>[null])[0] ??= new A()).b, noMethod); //# 30: static type warning
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((<A>[null])[0] ??= new B()).a; //# 31: ok
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((<A>[null])[0] ??= new B()).b; //# 32: static type warning
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if (!checkedMode) {
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((<B>[null])[0] ??= new A()).a; //# 33: ok
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Expect.throws(() => ((<B>[null])[0] ??= new A()).b, noMethod); //# 34: static type warning
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// Exactly the same static warnings that would be caused by e1[e2] = e3 are
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// also generated in the case of e1[e2] ??= e3.
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(<B>[null])[0] ??= new C(); //# 35: static type warning
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}
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// The static type of e1?.v op= e2 is the static type of e1.v op e2,
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// therefore the static type of e1?.v ??= e2 is the static type of
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// e1.v ?? e2, which is the LUB of the static types of e1?.v and e2.
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(new ClassWithInstanceGetters()?.a ??= new A()).a; //# 36: ok
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Expect.throws(() => (new ClassWithInstanceGetters()?.a ??= new A()).b, noMethod); //# 37: static type warning
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(new ClassWithInstanceGetters()?.a ??= new B()).a; //# 38: ok
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(new ClassWithInstanceGetters()?.a ??= new B()).b; //# 39: static type warning
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if (!checkedMode) {
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(new ClassWithInstanceGetters()?.b ??= new A()).a; //# 40: ok
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Expect.throws(() => (new ClassWithInstanceGetters()?.b ??= new A()).b, noMethod); //# 41: static type warning
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// Exactly the same static warnings that would be caused by e1.v ??= e2 are
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// also generated in the case of e1?.v ??= e2.
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new ClassWithInstanceGetters()?.b ??= new C(); //# 42: static type warning
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}
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}
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