// This file was procedurally generated from the following sources: // - src/class-elements/rs-static-generator-method-privatename-identifier.case // - src/class-elements/productions/cls-decl-multiple-definitions.template /*--- description: Valid Static GeneratorMethod PrivateName (multiple fields definitions) esid: prod-FieldDefinition features: [class-static-methods-private, class, class-fields-public] flags: [generated] includes: [propertyHelper.js] info: | ClassElement : MethodDefinition static MethodDefinition FieldDefinition ; static FieldDefinition ; ; MethodDefinition : GeneratorMethod GeneratorMethod : * ClassElementName ( UniqueFormalParameters ){ GeneratorBody } ClassElementName : PropertyName PrivateName PrivateName :: # IdentifierName IdentifierName :: IdentifierStart IdentifierName IdentifierPart IdentifierStart :: UnicodeIDStart $ _ \ UnicodeEscapeSequence IdentifierPart:: UnicodeIDContinue $ \ UnicodeEscapeSequence UnicodeIDStart:: any Unicode code point with the Unicode property "ID_Start" UnicodeIDContinue:: any Unicode code point with the Unicode property "ID_Continue" NOTE 3 The sets of code points with Unicode properties "ID_Start" and "ID_Continue" include, respectively, the code points with Unicode properties "Other_ID_Start" and "Other_ID_Continue". ---*/ class C { foo = "foobar"; m() { return 42 } static * #$(value) { yield * value; } static * #_(value) { yield * value; } static * #\u{6F}(value) { yield * value; } static * #\u2118(value) { yield * value; } static * #ZW_\u200C_NJ(value) { yield * value; } static * #ZW_\u200D_J(value) { yield * value; } m2() { return 39 } bar = "barbaz"; static get $() { return this.#$; } static get _() { return this.#_; } static get \u{6F}() { return this.#\u{6F}; } static get \u2118() { return this.#\u2118; } static get ZW_\u200C_NJ() { return this.#ZW_\u200C_NJ; } static get ZW_\u200D_J() { return this.#ZW_\u200D_J; } } var c = new C(); assert.sameValue(c.m(), 42); assert( !Object.prototype.hasOwnProperty.call(c, "m"), "m doesn't appear as an own property on the C instance" ); assert.sameValue(c.m, C.prototype.m); verifyProperty(C.prototype, "m", { enumerable: false, configurable: true, writable: true, }); assert.sameValue(c.m2(), 39); assert(! Object.prototype.hasOwnProperty.call(c, "m2"), "m2 doesn't appear as an own property on the C instance" ); assert.sameValue(c.m2, C.prototype.m2); verifyProperty(C.prototype, "m2", { enumerable: false, configurable: true, writable: true, }); assert.sameValue(c.foo, "foobar"); assert( !Object.prototype.hasOwnProperty.call(C, "foo"), "foo doesn't appear as an own property on the C constructor" ); assert( !Object.prototype.hasOwnProperty.call(C.prototype, "foo"), "foo doesn't appear as an own property on the C prototype" ); verifyProperty(c, "foo", { value: "foobar", enumerable: true, configurable: true, writable: true, }); assert.sameValue(c.bar, "barbaz"); assert( !Object.prototype.hasOwnProperty.call(C, "bar"), "bar doesn't appear as an own property on the C constructor" ); assert( !Object.prototype.hasOwnProperty.call(C.prototype, "bar"), "bar doesn't appear as an own property on the C prototype" ); verifyProperty(c, "bar", { value: "barbaz", enumerable: true, configurable: true, writable: true, }); assert.sameValue(C.$([1]).next().value, 1); assert.sameValue(C._([1]).next().value, 1); assert.sameValue(C.\u{6F}([1]).next().value, 1); assert.sameValue(C.\u2118([1]).next().value, 1); assert.sameValue(C.ZW_\u200C_NJ([1]).next().value, 1); assert.sameValue(C.ZW_\u200D_J([1]).next().value, 1); reportCompare(0, 0);