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// Copyright (c) 2018, 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.
/// @assertion We say that a type T0 is a subtype of a type T1 (written T0 <: T1)
/// when:
/// Function Type/Function: T0 is a function type and T1 is Function
/// @description Check that if type T0 is a function type and T1 is Function then
/// T0 is a subtype of T1. Test non-void generic function with required arguments
/// @author sgrekhov@unipro.ru
///
/// @description Check that if type T0 is a subtype of a type T1, then instance
/// of T0 can be be used as an argument of type T1
/// @author sgrekhov@unipro.ru
///
/// This test is generated from function_type_function_A14.dart and
/// arguments_binding_x01.dart.
/// Don't modify it. If you want to change this test, change one of the files
/// above and then run generator.dart to regenerate the tests.
class C {}
typedef X T0<X>(X x);
X t0Func<X>(X x) => x;
T0<C> t0Instance = t0Func;
Function t1Instance = () {};
void foo() {}
const t1Default = foo;
namedArgumentsFunc1(Function t1, {Function t2 = t1Default}) {}
positionalArgumentsFunc1(Function t1, [Function t2 = t1Default]) {}
namedArgumentsFunc2<X>(X t1, {required X t2}) {}
class ArgumentsBindingClass {
ArgumentsBindingClass(Function t1) {}
ArgumentsBindingClass.named(Function t1, {Function t2 = t1Default}) {}
ArgumentsBindingClass.positional(Function t1, [Function t2 = t1Default]) {}
factory ArgumentsBindingClass.fNamed(Function t1, {Function t2 = t1Default}) {
return new ArgumentsBindingClass.named(t1, t2: t2);
}
factory ArgumentsBindingClass.fPositional(Function t1, [Function t2 = t1Default]) {
return new ArgumentsBindingClass.positional(t1, t2);
}
static namedArgumentsStaticMethod(Function t1, {Function t2 = t1Default}) {}
static positionalArgumentsStaticMethod(Function t1, [Function t2 = t1Default]) {}
namedArgumentsMethod(Function t1, {Function t2 = t1Default}) {}
positionalArgumentsMethod(Function t1, [Function t2 = t1Default]) {}
set testSetter(Function val) {}
}
class ArgumentsBindingGen<X> {
ArgumentsBindingGen(X t1) {}
ArgumentsBindingGen.named(X t1, {required X t2}) {}
factory ArgumentsBindingGen.fNamed(X t1, {required X t2}) {
return new ArgumentsBindingGen.named(t1, t2: t2);
}
namedArgumentsMethod(X t1, {required X t2}) {}
set testSetter(X val) {}
}
main() {
// test functions
namedArgumentsFunc1(t0Instance, t2: t0Instance);
positionalArgumentsFunc1(t0Instance, t0Instance);
// test class constructors
ArgumentsBindingClass instance1 = new ArgumentsBindingClass(t0Instance);
instance1 = new ArgumentsBindingClass.fNamed(t0Instance, t2: t0Instance);
instance1 = new ArgumentsBindingClass.fPositional(t0Instance, t0Instance);
instance1 = new ArgumentsBindingClass.named(t0Instance, t2: t0Instance);
instance1 = new ArgumentsBindingClass.positional(t0Instance, t0Instance);
// tests methods and setters
instance1.namedArgumentsMethod(t0Instance, t2: t0Instance);
instance1.positionalArgumentsMethod(t0Instance, t0Instance);
instance1.testSetter = t0Instance;
// test static methods
ArgumentsBindingClass.namedArgumentsStaticMethod(t0Instance, t2: t0Instance);
ArgumentsBindingClass.positionalArgumentsStaticMethod(t0Instance, t0Instance);
// Test type parameters
//# <-- NotGenericFunctionType
// test generic functions
namedArgumentsFunc2<Function>(t0Instance, t2: t0Instance);
// test generic class constructors
ArgumentsBindingGen<Function> instance2 = new ArgumentsBindingGen<Function>(t0Instance);
instance2 = new ArgumentsBindingGen<Function>.fNamed(t0Instance, t2: t0Instance);
instance2 = new ArgumentsBindingGen<Function>.named(t0Instance, t2: t0Instance);
// test generic class methods and setters
instance2.namedArgumentsMethod(t0Instance, t2: t0Instance);
instance2.testSetter = t0Instance;
//# -->
}