Files
sdk/pkg/front_end/testcases/general/invalid_operator.dart.weak.expect
T
Johnni Winther 56f46b0659 Remove non-nullable experiment flag from front_end test cases.
This changes the CFE expectation test suites to use unsound null safety
as default to avoid passing --enable-experiments=no-non-nullable to opt
out old test folders.

This change removes most test folders from the 'strong' tester, since
this now only supports sound null safety, which requires all libraries
to be opted in. Instead, the 'weak' tester now runs all test folders.
Additionally the 'outline' tester is changed to use unsound null safety
so that it call be used on all test folders.

The 'fast_strong' tester is removed since it should just be run locally
and it can be run by passing an option to the other testers.

References to non-existing 'shaker' folder has been removed from
testing.json.


Change-Id: Ibcc306f7b27d06b9637c205238bc408194f1d062
Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/184787
Commit-Queue: Johnni Winther <johnniwinther@google.com>
Reviewed-by: Jens Johansen <jensj@google.com>
2021-02-18 12:29:18 +00:00

969 lines
42 KiB
Plaintext

library;
//
// Problems in library:
//
// pkg/front_end/testcases/general/invalid_operator.dart:6:12: Error: Operator '==' should have exactly one parameter.
// operator ==() => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:7:12: Error: Operator '<' should have exactly one parameter.
// operator <() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:8:12: Error: Operator '>' should have exactly one parameter.
// operator >() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:9:12: Error: Operator '<=' should have exactly one parameter.
// operator <=() => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:10:12: Error: Operator '>=' should have exactly one parameter.
// operator >=() => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:11:12: Error: Operator '+' should have exactly one parameter.
// operator +() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:12:12: Error: Operator '/' should have exactly one parameter.
// operator /() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:13:12: Error: Operator '~/' should have exactly one parameter.
// operator ~/() => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:14:12: Error: Operator '*' should have exactly one parameter.
// operator *() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:15:12: Error: Operator '%' should have exactly one parameter.
// operator %() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:16:12: Error: Operator '|' should have exactly one parameter.
// operator |() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:17:12: Error: Operator '^' should have exactly one parameter.
// operator ^() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:18:12: Error: Operator '&' should have exactly one parameter.
// operator &() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:19:12: Error: Operator '<<' should have exactly one parameter.
// operator <<() => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:20:12: Error: Operator '>>' should have exactly one parameter.
// operator >>() => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:21:12: Error: Operator '[]=' should have exactly two parameters.
// operator []=(a, b, c) => true;
// ^^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:22:12: Error: Operator '[]' should have exactly one parameter.
// operator []() => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:23:12: Error: Operator '~' shouldn't have any parameters.
// operator ~(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:27:12: Error: Operator '==' should have exactly one parameter.
// operator ==(a, b) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:28:12: Error: Operator '<' should have exactly one parameter.
// operator <(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:29:12: Error: Operator '>' should have exactly one parameter.
// operator >(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:30:12: Error: Operator '<=' should have exactly one parameter.
// operator <=(a, b) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:31:12: Error: Operator '>=' should have exactly one parameter.
// operator >=(a, b) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:32:12: Error: Operator '-' should have zero or one parameter.
// With zero parameters, it has the syntactic form '-a', formally known as 'unary-'. With one parameter, it has the syntactic form 'a - b', formally known as '-'.
// operator -(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:33:12: Error: Operator '+' should have exactly one parameter.
// operator +(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:34:12: Error: Operator '/' should have exactly one parameter.
// operator /(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:35:12: Error: Operator '~/' should have exactly one parameter.
// operator ~/(a, b) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:36:12: Error: Operator '*' should have exactly one parameter.
// operator *(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:37:12: Error: Operator '%' should have exactly one parameter.
// operator %(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:38:12: Error: Operator '|' should have exactly one parameter.
// operator |(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:39:12: Error: Operator '^' should have exactly one parameter.
// operator ^(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:40:12: Error: Operator '&' should have exactly one parameter.
// operator &(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:41:12: Error: Operator '<<' should have exactly one parameter.
// operator <<(a, b) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:42:12: Error: Operator '>>' should have exactly one parameter.
// operator >>(a, b) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:43:12: Error: Operator '[]=' should have exactly two parameters.
// operator []=(a, b, c) => true;
// ^^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:44:12: Error: Operator '[]' should have exactly one parameter.
// operator [](a, b) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:45:12: Error: Operator '~' shouldn't have any parameters.
// operator ~(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:49:16: Error: An operator can't have optional parameters.
// operator ==([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:50:15: Error: An operator can't have optional parameters.
// operator <([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:51:15: Error: An operator can't have optional parameters.
// operator >([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:52:16: Error: An operator can't have optional parameters.
// operator <=([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:53:16: Error: An operator can't have optional parameters.
// operator >=([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:54:15: Error: An operator can't have optional parameters.
// operator -([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:55:15: Error: An operator can't have optional parameters.
// operator +([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:56:15: Error: An operator can't have optional parameters.
// operator /([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:57:16: Error: An operator can't have optional parameters.
// operator ~/([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:58:15: Error: An operator can't have optional parameters.
// operator *([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:59:15: Error: An operator can't have optional parameters.
// operator %([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:60:15: Error: An operator can't have optional parameters.
// operator |([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:61:15: Error: An operator can't have optional parameters.
// operator ^([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:62:15: Error: An operator can't have optional parameters.
// operator &([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:63:16: Error: An operator can't have optional parameters.
// operator <<([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:64:16: Error: An operator can't have optional parameters.
// operator >>([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:65:17: Error: An operator can't have optional parameters.
// operator []=([a, b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:65:20: Error: An operator can't have optional parameters.
// operator []=([a, b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:66:16: Error: An operator can't have optional parameters.
// operator []([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:67:12: Error: Operator '~' shouldn't have any parameters.
// operator ~([a]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:71:16: Error: An operator can't have optional parameters.
// operator ==({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:72:15: Error: An operator can't have optional parameters.
// operator <({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:73:15: Error: An operator can't have optional parameters.
// operator >({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:74:16: Error: An operator can't have optional parameters.
// operator <=({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:75:16: Error: An operator can't have optional parameters.
// operator >=({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:76:15: Error: An operator can't have optional parameters.
// operator -({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:77:15: Error: An operator can't have optional parameters.
// operator +({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:78:15: Error: An operator can't have optional parameters.
// operator /({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:79:16: Error: An operator can't have optional parameters.
// operator ~/({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:80:15: Error: An operator can't have optional parameters.
// operator *({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:81:15: Error: An operator can't have optional parameters.
// operator %({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:82:15: Error: An operator can't have optional parameters.
// operator |({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:83:15: Error: An operator can't have optional parameters.
// operator ^({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:84:15: Error: An operator can't have optional parameters.
// operator &({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:85:16: Error: An operator can't have optional parameters.
// operator <<({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:86:16: Error: An operator can't have optional parameters.
// operator >>({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:87:17: Error: An operator can't have optional parameters.
// operator []=({a, b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:87:20: Error: An operator can't have optional parameters.
// operator []=({a, b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:88:16: Error: An operator can't have optional parameters.
// operator []({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:89:12: Error: Operator '~' shouldn't have any parameters.
// operator ~({a}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:93:12: Error: Operator '==' should have exactly one parameter.
// operator ==(a, [b]) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:94:12: Error: Operator '<' should have exactly one parameter.
// operator <(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:95:12: Error: Operator '>' should have exactly one parameter.
// operator >(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:96:12: Error: Operator '<=' should have exactly one parameter.
// operator <=(a, [b]) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:97:12: Error: Operator '>=' should have exactly one parameter.
// operator >=(a, [b]) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:98:12: Error: Operator '-' should have zero or one parameter.
// With zero parameters, it has the syntactic form '-a', formally known as 'unary-'. With one parameter, it has the syntactic form 'a - b', formally known as '-'.
// operator -(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:99:12: Error: Operator '+' should have exactly one parameter.
// operator +(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:100:12: Error: Operator '/' should have exactly one parameter.
// operator /(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:101:12: Error: Operator '~/' should have exactly one parameter.
// operator ~/(a, [b]) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:102:12: Error: Operator '*' should have exactly one parameter.
// operator *(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:103:12: Error: Operator '%' should have exactly one parameter.
// operator %(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:104:12: Error: Operator '|' should have exactly one parameter.
// operator |(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:105:12: Error: Operator '^' should have exactly one parameter.
// operator ^(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:106:12: Error: Operator '&' should have exactly one parameter.
// operator &(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:107:12: Error: Operator '<<' should have exactly one parameter.
// operator <<(a, [b]) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:108:12: Error: Operator '>>' should have exactly one parameter.
// operator >>(a, [b]) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:109:12: Error: Operator '[]=' should have exactly two parameters.
// operator []=(a, b, [c]) => true;
// ^^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:110:12: Error: Operator '[]' should have exactly one parameter.
// operator [](a, [b]) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:111:12: Error: Operator '~' shouldn't have any parameters.
// operator ~(a, [b]) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:115:12: Error: Operator '==' should have exactly one parameter.
// operator ==(a, {b}) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:116:12: Error: Operator '<' should have exactly one parameter.
// operator <(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:117:12: Error: Operator '>' should have exactly one parameter.
// operator >(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:118:12: Error: Operator '<=' should have exactly one parameter.
// operator <=(a, {b}) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:119:12: Error: Operator '>=' should have exactly one parameter.
// operator >=(a, {b}) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:120:12: Error: Operator '-' should have zero or one parameter.
// With zero parameters, it has the syntactic form '-a', formally known as 'unary-'. With one parameter, it has the syntactic form 'a - b', formally known as '-'.
// operator -(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:121:12: Error: Operator '+' should have exactly one parameter.
// operator +(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:122:12: Error: Operator '/' should have exactly one parameter.
// operator /(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:123:12: Error: Operator '~/' should have exactly one parameter.
// operator ~/(a, {b}) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:124:12: Error: Operator '*' should have exactly one parameter.
// operator *(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:125:12: Error: Operator '%' should have exactly one parameter.
// operator %(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:126:12: Error: Operator '|' should have exactly one parameter.
// operator |(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:127:12: Error: Operator '^' should have exactly one parameter.
// operator ^(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:128:12: Error: Operator '&' should have exactly one parameter.
// operator &(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:129:12: Error: Operator '<<' should have exactly one parameter.
// operator <<(a, {b}) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:130:12: Error: Operator '>>' should have exactly one parameter.
// operator >>(a, {b}) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:131:12: Error: Operator '[]=' should have exactly two parameters.
// operator []=(a, b, {c}) => true;
// ^^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:132:12: Error: Operator '[]' should have exactly one parameter.
// operator [](a, {b}) => true;
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:133:12: Error: Operator '~' shouldn't have any parameters.
// operator ~(a, {b}) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:137:15: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator ==<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:138:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator ><T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:139:15: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator <=<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:140:15: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator >=<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:141:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator -<T>() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:142:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator -<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:143:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator +<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:144:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator /<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:145:15: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator ~/<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:146:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator *<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:147:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator %<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:148:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator |<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:149:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator ^<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:150:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator &<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:151:15: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator <<<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:152:15: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator >><T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:153:16: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator []=<T>(a, b) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:154:15: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator []<T>(a) => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:155:14: Error: Types parameters aren't allowed when defining an operator.
// Try removing the type parameters.
// operator ~<T>() => true;
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:137:12: Error: Can't infer types for '==' as the overridden members don't have a combined signature.
// Try adding explicit types.
// operator ==<T>(a) => true;
// ^^
// sdk/lib/_internal/vm/lib/object_patch.dart:21:17: Context: This is one of the overridden members.
// bool operator ==(Object other) native "Object_equals";
// ^^
//
// pkg/front_end/testcases/general/invalid_operator.dart:6:12: Error: The method 'Operators1.==' has fewer positional arguments than those of overridden method 'Object.=='.
// operator ==() => true;
// ^
// sdk/lib/_internal/vm/lib/object_patch.dart:21:17: Context: This is the overridden method ('==').
// bool operator ==(Object other) native "Object_equals";
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:27:12: Error: The method 'Operators2.==' has more required arguments than those of overridden method 'Object.=='.
// operator ==(a, b) => true;
// ^
// sdk/lib/_internal/vm/lib/object_patch.dart:21:17: Context: This is the overridden method ('==').
// bool operator ==(Object other) native "Object_equals";
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:71:12: Error: The method 'Operators4.==' has fewer positional arguments than those of overridden method 'Object.=='.
// operator ==({a}) => true;
// ^
// sdk/lib/_internal/vm/lib/object_patch.dart:21:17: Context: This is the overridden method ('==').
// bool operator ==(Object other) native "Object_equals";
// ^
//
// pkg/front_end/testcases/general/invalid_operator.dart:137:12: Error: Declared type variables of 'Operators7.==' doesn't match those on overridden method 'Object.=='.
// operator ==<T>(a) => true;
// ^
// sdk/lib/_internal/vm/lib/object_patch.dart:21:17: Context: This is the overridden method ('==').
// bool operator ==(Object other) native "Object_equals";
// ^
//
import self as self;
import "dart:core" as core;
class Operators1 extends core::Object {
synthetic constructor •() → self::Operators1*
: super core::Object::•()
;
operator ==() → core::bool*
return true;
operator <() → dynamic
return true;
operator >() → dynamic
return true;
operator <=() → dynamic
return true;
operator >=() → dynamic
return true;
operator +() → dynamic
return true;
operator /() → dynamic
return true;
operator ~/() → dynamic
return true;
operator *() → dynamic
return true;
operator %() → dynamic
return true;
operator |() → dynamic
return true;
operator ^() → dynamic
return true;
operator &() → dynamic
return true;
operator <<() → dynamic
return true;
operator >>() → dynamic
return true;
operator []=(dynamic a, dynamic b, dynamic c) → void
return true;
operator []() → dynamic
return true;
operator ~(dynamic a) → dynamic
return true;
abstract member-signature get _identityHashCode() → core::int*; -> core::Object::_identityHashCode
abstract member-signature method _instanceOf(dynamic instantiatorTypeArguments, dynamic functionTypeArguments, dynamic type) → core::bool*; -> core::Object::_instanceOf
abstract member-signature method _simpleInstanceOf(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOf
abstract member-signature method _simpleInstanceOfTrue(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfTrue
abstract member-signature method _simpleInstanceOfFalse(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfFalse
abstract member-signature get hashCode() → core::int*; -> core::Object::hashCode
abstract member-signature method toString() → core::String*; -> core::Object::toString
abstract member-signature method noSuchMethod(core::Invocation* invocation) → dynamic; -> core::Object::noSuchMethod
abstract member-signature get runtimeType() → core::Type*; -> core::Object::runtimeType
}
class Operators2 extends core::Object {
synthetic constructor •() → self::Operators2*
: super core::Object::•()
;
operator ==(dynamic a, dynamic b) → core::bool*
return true;
operator <(dynamic a, dynamic b) → dynamic
return true;
operator >(dynamic a, dynamic b) → dynamic
return true;
operator <=(dynamic a, dynamic b) → dynamic
return true;
operator >=(dynamic a, dynamic b) → dynamic
return true;
operator -(dynamic a, dynamic b) → dynamic
return true;
operator +(dynamic a, dynamic b) → dynamic
return true;
operator /(dynamic a, dynamic b) → dynamic
return true;
operator ~/(dynamic a, dynamic b) → dynamic
return true;
operator *(dynamic a, dynamic b) → dynamic
return true;
operator %(dynamic a, dynamic b) → dynamic
return true;
operator |(dynamic a, dynamic b) → dynamic
return true;
operator ^(dynamic a, dynamic b) → dynamic
return true;
operator &(dynamic a, dynamic b) → dynamic
return true;
operator <<(dynamic a, dynamic b) → dynamic
return true;
operator >>(dynamic a, dynamic b) → dynamic
return true;
operator []=(dynamic a, dynamic b, dynamic c) → void
return true;
operator [](dynamic a, dynamic b) → dynamic
return true;
operator ~(dynamic a, dynamic b) → dynamic
return true;
abstract member-signature get _identityHashCode() → core::int*; -> core::Object::_identityHashCode
abstract member-signature method _instanceOf(dynamic instantiatorTypeArguments, dynamic functionTypeArguments, dynamic type) → core::bool*; -> core::Object::_instanceOf
abstract member-signature method _simpleInstanceOf(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOf
abstract member-signature method _simpleInstanceOfTrue(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfTrue
abstract member-signature method _simpleInstanceOfFalse(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfFalse
abstract member-signature get hashCode() → core::int*; -> core::Object::hashCode
abstract member-signature method toString() → core::String*; -> core::Object::toString
abstract member-signature method noSuchMethod(core::Invocation* invocation) → dynamic; -> core::Object::noSuchMethod
abstract member-signature get runtimeType() → core::Type*; -> core::Object::runtimeType
}
class Operators3 extends core::Object {
synthetic constructor •() → self::Operators3*
: super core::Object::•()
;
operator ==([dynamic a = #C1]) → core::bool*
return true;
operator <([dynamic a = #C1]) → dynamic
return true;
operator >([dynamic a = #C1]) → dynamic
return true;
operator <=([dynamic a = #C1]) → dynamic
return true;
operator >=([dynamic a = #C1]) → dynamic
return true;
operator -([dynamic a = #C1]) → dynamic
return true;
operator +([dynamic a = #C1]) → dynamic
return true;
operator /([dynamic a = #C1]) → dynamic
return true;
operator ~/([dynamic a = #C1]) → dynamic
return true;
operator *([dynamic a = #C1]) → dynamic
return true;
operator %([dynamic a = #C1]) → dynamic
return true;
operator |([dynamic a = #C1]) → dynamic
return true;
operator ^([dynamic a = #C1]) → dynamic
return true;
operator &([dynamic a = #C1]) → dynamic
return true;
operator <<([dynamic a = #C1]) → dynamic
return true;
operator >>([dynamic a = #C1]) → dynamic
return true;
operator []=([dynamic a = #C1, dynamic b = #C1]) → void
return true;
operator []([dynamic a = #C1]) → dynamic
return true;
operator ~([dynamic a = #C1]) → dynamic
return true;
abstract member-signature get _identityHashCode() → core::int*; -> core::Object::_identityHashCode
abstract member-signature method _instanceOf(dynamic instantiatorTypeArguments, dynamic functionTypeArguments, dynamic type) → core::bool*; -> core::Object::_instanceOf
abstract member-signature method _simpleInstanceOf(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOf
abstract member-signature method _simpleInstanceOfTrue(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfTrue
abstract member-signature method _simpleInstanceOfFalse(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfFalse
abstract member-signature get hashCode() → core::int*; -> core::Object::hashCode
abstract member-signature method toString() → core::String*; -> core::Object::toString
abstract member-signature method noSuchMethod(core::Invocation* invocation) → dynamic; -> core::Object::noSuchMethod
abstract member-signature get runtimeType() → core::Type*; -> core::Object::runtimeType
}
class Operators4 extends core::Object {
synthetic constructor •() → self::Operators4*
: super core::Object::•()
;
operator ==({dynamic a = #C1}) → core::bool*
return true;
operator <({dynamic a = #C1}) → dynamic
return true;
operator >({dynamic a = #C1}) → dynamic
return true;
operator <=({dynamic a = #C1}) → dynamic
return true;
operator >=({dynamic a = #C1}) → dynamic
return true;
operator -({dynamic a = #C1}) → dynamic
return true;
operator +({dynamic a = #C1}) → dynamic
return true;
operator /({dynamic a = #C1}) → dynamic
return true;
operator ~/({dynamic a = #C1}) → dynamic
return true;
operator *({dynamic a = #C1}) → dynamic
return true;
operator %({dynamic a = #C1}) → dynamic
return true;
operator |({dynamic a = #C1}) → dynamic
return true;
operator ^({dynamic a = #C1}) → dynamic
return true;
operator &({dynamic a = #C1}) → dynamic
return true;
operator <<({dynamic a = #C1}) → dynamic
return true;
operator >>({dynamic a = #C1}) → dynamic
return true;
operator []=({dynamic a = #C1, dynamic b = #C1}) → void
return true;
operator []({dynamic a = #C1}) → dynamic
return true;
operator ~({dynamic a = #C1}) → dynamic
return true;
abstract member-signature get _identityHashCode() → core::int*; -> core::Object::_identityHashCode
abstract member-signature method _instanceOf(dynamic instantiatorTypeArguments, dynamic functionTypeArguments, dynamic type) → core::bool*; -> core::Object::_instanceOf
abstract member-signature method _simpleInstanceOf(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOf
abstract member-signature method _simpleInstanceOfTrue(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfTrue
abstract member-signature method _simpleInstanceOfFalse(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfFalse
abstract member-signature get hashCode() → core::int*; -> core::Object::hashCode
abstract member-signature method toString() → core::String*; -> core::Object::toString
abstract member-signature method noSuchMethod(core::Invocation* invocation) → dynamic; -> core::Object::noSuchMethod
abstract member-signature get runtimeType() → core::Type*; -> core::Object::runtimeType
}
class Operators5 extends core::Object {
synthetic constructor •() → self::Operators5*
: super core::Object::•()
;
operator ==(dynamic a, [dynamic b = #C1]) → core::bool*
return true;
operator <(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator >(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator <=(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator >=(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator -(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator +(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator /(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator ~/(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator *(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator %(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator |(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator ^(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator &(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator <<(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator >>(dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator []=(dynamic a, dynamic b, [dynamic c = #C1]) → void
return true;
operator [](dynamic a, [dynamic b = #C1]) → dynamic
return true;
operator ~(dynamic a, [dynamic b = #C1]) → dynamic
return true;
abstract member-signature get _identityHashCode() → core::int*; -> core::Object::_identityHashCode
abstract member-signature method _instanceOf(dynamic instantiatorTypeArguments, dynamic functionTypeArguments, dynamic type) → core::bool*; -> core::Object::_instanceOf
abstract member-signature method _simpleInstanceOf(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOf
abstract member-signature method _simpleInstanceOfTrue(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfTrue
abstract member-signature method _simpleInstanceOfFalse(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfFalse
abstract member-signature get hashCode() → core::int*; -> core::Object::hashCode
abstract member-signature method toString() → core::String*; -> core::Object::toString
abstract member-signature method noSuchMethod(core::Invocation* invocation) → dynamic; -> core::Object::noSuchMethod
abstract member-signature get runtimeType() → core::Type*; -> core::Object::runtimeType
}
class Operators6 extends core::Object {
synthetic constructor •() → self::Operators6*
: super core::Object::•()
;
operator ==(dynamic a, {dynamic b = #C1}) → core::bool*
return true;
operator <(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator >(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator <=(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator >=(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator -(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator +(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator /(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator ~/(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator *(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator %(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator |(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator ^(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator &(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator <<(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator >>(dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator []=(dynamic a, dynamic b, {dynamic c = #C1}) → void
return true;
operator [](dynamic a, {dynamic b = #C1}) → dynamic
return true;
operator ~(dynamic a, {dynamic b = #C1}) → dynamic
return true;
abstract member-signature get _identityHashCode() → core::int*; -> core::Object::_identityHashCode
abstract member-signature method _instanceOf(dynamic instantiatorTypeArguments, dynamic functionTypeArguments, dynamic type) → core::bool*; -> core::Object::_instanceOf
abstract member-signature method _simpleInstanceOf(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOf
abstract member-signature method _simpleInstanceOfTrue(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfTrue
abstract member-signature method _simpleInstanceOfFalse(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfFalse
abstract member-signature get hashCode() → core::int*; -> core::Object::hashCode
abstract member-signature method toString() → core::String*; -> core::Object::toString
abstract member-signature method noSuchMethod(core::Invocation* invocation) → dynamic; -> core::Object::noSuchMethod
abstract member-signature get runtimeType() → core::Type*; -> core::Object::runtimeType
}
class Operators7 extends core::Object {
synthetic constructor •() → self::Operators7*
: super core::Object::•()
;
operator ==<T extends core::Object* = dynamic>(invalid-type a) → invalid-type
return true;
operator ><T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator <=<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator >=<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator unary-<T extends core::Object* = dynamic>() → dynamic
return true;
operator -<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator +<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator /<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator ~/<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator *<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator %<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator |<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator ^<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator &<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator <<<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator >><T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator []=<T extends core::Object* = dynamic>(dynamic a, dynamic b) → void
return true;
operator []<T extends core::Object* = dynamic>(dynamic a) → dynamic
return true;
operator ~<T extends core::Object* = dynamic>() → dynamic
return true;
abstract member-signature get _identityHashCode() → core::int*; -> core::Object::_identityHashCode
abstract member-signature method _instanceOf(dynamic instantiatorTypeArguments, dynamic functionTypeArguments, dynamic type) → core::bool*; -> core::Object::_instanceOf
abstract member-signature method _simpleInstanceOf(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOf
abstract member-signature method _simpleInstanceOfTrue(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfTrue
abstract member-signature method _simpleInstanceOfFalse(dynamic type) → core::bool*; -> core::Object::_simpleInstanceOfFalse
abstract member-signature get hashCode() → core::int*; -> core::Object::hashCode
abstract member-signature method toString() → core::String*; -> core::Object::toString
abstract member-signature method noSuchMethod(core::Invocation* invocation) → dynamic; -> core::Object::noSuchMethod
abstract member-signature get runtimeType() → core::Type*; -> core::Object::runtimeType
}
static method main() → dynamic {}
constants {
#C1 = null
}