Ikagaka/named-kernel-manager.js

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Expected indentation of 14 spaces but found 16.
Open

                throw _iteratorError;
Severity: Minor
Found in lib/mixin.js by eslint

enforce consistent indentation (indent)

There are several common guidelines which require specific indentation of nested blocks and statements, like:

function hello(indentSize, type) {
    if (indentSize === 4 && type !== 'tab') {
        console.log('Each next indentation will increase on 4 spaces');
    }
}

These are the most common scenarios recommended in different style guides:

  • Two spaces, not longer and no tabs: Google, npm, Node.js, Idiomatic, Felix
  • Tabs: jQuery
  • Four spaces: Crockford

Rule Details

This rule enforces a consistent indentation style. The default style is 4 spaces.

Options

This rule has a mixed option:

For example, for 2-space indentation:

{
    "indent": ["error", 2]
}

Or for tabbed indentation:

{
    "indent": ["error", "tab"]
}

Examples of incorrect code for this rule with the default options:

/*eslint indent: "error"*/

if (a) {
  b=c;
  function foo(d) {
    e=f;
  }
}

Examples of correct code for this rule with the default options:

/*eslint indent: "error"*/

if (a) {
    b=c;
    function foo(d) {
        e=f;
    }
}

This rule has an object option:

  • "SwitchCase" (default: 0) enforces indentation level for case clauses in switch statements
  • "VariableDeclarator" (default: 1) enforces indentation level for var declarators; can also take an object to define separate rules for var, let and const declarations.
  • "outerIIFEBody" (default: 1) enforces indentation level for file-level IIFEs.
  • "MemberExpression" (off by default) enforces indentation level for multi-line property chains (except in variable declarations and assignments)
  • "FunctionDeclaration" takes an object to define rules for function declarations.
    • parameters (off by default) enforces indentation level for parameters in a function declaration. This can either be a number indicating indentation level, or the string "first" indicating that all parameters of the declaration must be aligned with the first parameter.
    • body (default: 1) enforces indentation level for the body of a function declaration.
  • "FunctionExpression" takes an object to define rules for function expressions.
    • parameters (off by default) enforces indentation level for parameters in a function expression. This can either be a number indicating indentation level, or the string "first" indicating that all parameters of the expression must be aligned with the first parameter.
    • body (default: 1) enforces indentation level for the body of a function expression.
  • "CallExpression" takes an object to define rules for function call expressions.
    • arguments (off by default) enforces indentation level for arguments in a call expression. This can either be a number indicating indentation level, or the string "first" indicating that all arguments of the expression must be aligned with the first argument.
  • "ArrayExpression" (default: 1) enforces indentation level for elements in arrays. It can also be set to the string "first", indicating that all the elements in the array should be aligned with the first element.
  • "ObjectExpression" (default: 1) enforces indentation level for properties in objects. It can be set to the string "first", indicating that all properties in the object should be aligned with the first property.

Level of indentation denotes the multiple of the indent specified. Example:

  • Indent of 4 spaces with VariableDeclarator set to 2 will indent the multi-line variable declarations with 8 spaces.
  • Indent of 2 spaces with VariableDeclarator set to 2 will indent the multi-line variable declarations with 4 spaces.
  • Indent of 2 spaces with VariableDeclarator set to {"var": 2, "let": 2, "const": 3} will indent the multi-line variable declarations with 4 spaces for var and let, 6 spaces for const statements.
  • Indent of tab with VariableDeclarator set to 2 will indent the multi-line variable declarations with 2 tabs.
  • Indent of 2 spaces with SwitchCase set to 0 will not indent case clauses with respect to switch statements.
  • Indent of 2 spaces with SwitchCase set to 1 will indent case clauses with 2 spaces with respect to switch statements.
  • Indent of 2 spaces with SwitchCase set to 2 will indent case clauses with 4 spaces with respect to switch statements.
  • Indent of tab with SwitchCase set to 2 will indent case clauses with 2 tabs with respect to switch statements.
  • Indent of 2 spaces with MemberExpression set to 0 will indent the multi-line property chains with 0 spaces.
  • Indent of 2 spaces with MemberExpression set to 1 will indent the multi-line property chains with 2 spaces.
  • Indent of 2 spaces with MemberExpression set to 2 will indent the multi-line property chains with 4 spaces.
  • Indent of 4 spaces with MemberExpression set to 0 will indent the multi-line property chains with 0 spaces.
  • Indent of 4 spaces with MemberExpression set to 1 will indent the multi-line property chains with 4 spaces.
  • Indent of 4 spaces with MemberExpression set to 2 will indent the multi-line property chains with 8 spaces.

tab

Examples of incorrect code for this rule with the "tab" option:

/*eslint indent: ["error", "tab"]*/

if (a) {
     b=c;
function foo(d) {
           e=f;
 }
}

Examples of correct code for this rule with the "tab" option:

/*eslint indent: ["error", "tab"]*/

if (a) {
/*tab*/b=c;
/*tab*/function foo(d) {
/*tab*//*tab*/e=f;
/*tab*/}
}

SwitchCase

Examples of incorrect code for this rule with the 2, { "SwitchCase": 1 } options:

/*eslint indent: ["error", 2, { "SwitchCase": 1 }]*/

switch(a){
case "a":
    break;
case "b":
    break;
}

Examples of correct code for this rule with the 2, { "SwitchCase": 1 } option:

/*eslint indent: ["error", 2, { "SwitchCase": 1 }]*/

switch(a){
  case "a":
    break;
  case "b":
    break;
}

VariableDeclarator

Examples of incorrect code for this rule with the 2, { "VariableDeclarator": 1 } options:

/*eslint indent: ["error", 2, { "VariableDeclarator": 1 }]*/
/*eslint-env es6*/

var a,
    b,
    c;
let a,
    b,
    c;
const a = 1,
    b = 2,
    c = 3;

Examples of correct code for this rule with the 2, { "VariableDeclarator": 1 } options:

/*eslint indent: ["error", 2, { "VariableDeclarator": 1 }]*/
/*eslint-env es6*/

var a,
  b,
  c;
let a,
  b,
  c;
const a = 1,
  b = 2,
  c = 3;

Examples of correct code for this rule with the 2, { "VariableDeclarator": 2 } options:

/*eslint indent: ["error", 2, { "VariableDeclarator": 2 }]*/
/*eslint-env es6*/

var a,
    b,
    c;
let a,
    b,
    c;
const a = 1,
    b = 2,
    c = 3;

Examples of correct code for this rule with the 2, { "VariableDeclarator": { "var": 2, "let": 2, "const": 3 } } options:

/*eslint indent: ["error", 2, { "VariableDeclarator": { "var": 2, "let": 2, "const": 3 } }]*/
/*eslint-env es6*/

var a,
    b,
    c;
let a,
    b,
    c;
const a = 1,
      b = 2,
      c = 3;

outerIIFEBody

Examples of incorrect code for this rule with the options 2, { "outerIIFEBody": 0 }:

/*eslint indent: ["error", 2, { "outerIIFEBody": 0 }]*/

(function() {

  function foo(x) {
    return x + 1;
  }

})();


if(y) {
console.log('foo');
}

Examples of correct code for this rule with the options 2, {"outerIIFEBody": 0}:

/*eslint indent: ["error", 2, { "outerIIFEBody": 0 }]*/

(function() {

function foo(x) {
  return x + 1;
}

})();


if(y) {
   console.log('foo');
}

MemberExpression

Examples of incorrect code for this rule with the 2, { "MemberExpression": 1 } options:

/*eslint indent: ["error", 2, { "MemberExpression": 1 }]*/

foo
.bar
.baz()

Examples of correct code for this rule with the 2, { "MemberExpression": 1 } option:

/*eslint indent: ["error", 2, { "MemberExpression": 1 }]*/

foo
  .bar
  .baz();

// Any indentation is permitted in variable declarations and assignments.
var bip = aardvark.badger
                  .coyote;

FunctionDeclaration

Examples of incorrect code for this rule with the 2, { "FunctionDeclaration": {"body": 1, "parameters": 2} } option:

/*eslint indent: ["error", 2, { "FunctionDeclaration": {"body": 1, "parameters": 2} }]*/

function foo(bar,
  baz,
  qux) {
    qux();
}

Examples of correct code for this rule with the 2, { "FunctionDeclaration": {"body": 1, "parameters": 2} } option:

/*eslint indent: ["error", 2, { "FunctionDeclaration": {"body": 1, "parameters": 2} }]*/

function foo(bar,
    baz,
    qux) {
  qux();
}

Examples of incorrect code for this rule with the 2, { "FunctionDeclaration": {"parameters": "first"} } option:

/*eslint indent: ["error", 2, {"FunctionDeclaration": {"parameters": "first"}}]*/

function foo(bar, baz,
  qux, boop) {
  qux();
}

Examples of correct code for this rule with the 2, { "FunctionDeclaration": {"parameters": "first"} } option:

/*eslint indent: ["error", 2, {"FunctionDeclaration": {"parameters": "first"}}]*/

function foo(bar, baz,
             qux, boop) {
  qux();
}

FunctionExpression

Examples of incorrect code for this rule with the 2, { "FunctionExpression": {"body": 1, "parameters": 2} } option:

/*eslint indent: ["error", 2, { "FunctionExpression": {"body": 1, "parameters": 2} }]*/

var foo = function(bar,
  baz,
  qux) {
    qux();
}

Examples of correct code for this rule with the 2, { "FunctionExpression": {"body": 1, "parameters": 2} } option:

/*eslint indent: ["error", 2, { "FunctionExpression": {"body": 1, "parameters": 2} }]*/

var foo = function(bar,
    baz,
    qux) {
  qux();
}

Examples of incorrect code for this rule with the 2, { "FunctionExpression": {"parameters": "first"} } option:

/*eslint indent: ["error", 2, {"FunctionExpression": {"parameters": "first"}}]*/

var foo = function(bar, baz,
  qux, boop) {
  qux();
}

Examples of correct code for this rule with the 2, { "FunctionExpression": {"parameters": "first"} } option:

/*eslint indent: ["error", 2, {"FunctionExpression": {"parameters": "first"}}]*/

var foo = function(bar, baz,
                   qux, boop) {
  qux();
}

CallExpression

Examples of incorrect code for this rule with the 2, { "CallExpression": {"arguments": 1} } option:

/*eslint indent: ["error", 2, { "CallExpression": {"arguments": 1} }]*/

foo(bar,
    baz,
      qux
);

Examples of correct code for this rule with the 2, { "CallExpression": {"arguments": 1} } option:

/*eslint indent: ["error", 2, { "CallExpression": {"arguments": 1} }]*/

foo(bar,
  baz,
  qux
);

Examples of incorrect code for this rule with the 2, { "CallExpression": {"arguments": "first"} } option:

/*eslint indent: ["error", 2, {"CallExpression": {"arguments": "first"}}]*/

foo(bar, baz,
  baz, boop, beep);

Examples of correct code for this rule with the 2, { "CallExpression": {"arguments": "first"} } option:

/*eslint indent: ["error", 2, {"CallExpression": {"arguments": "first"}}]*/

foo(bar, baz,
    baz, boop, beep);

ArrayExpression

Examples of incorrect code for this rule with the 2, { "ArrayExpression": 1 } option:

/*eslint indent: ["error", 2, { "ArrayExpression": 1 }]*/

var foo = [
    bar,
baz,
      qux
];

Examples of correct code for this rule with the 2, { "ArrayExpression": 1 } option:

/*eslint indent: ["error", 2, { "ArrayExpression": 1 }]*/

var foo = [
  bar,
  baz,
  qux
];

Examples of incorrect code for this rule with the 2, { "ArrayExpression": "first" } option:

/*eslint indent: ["error", 2, {"ArrayExpression": "first"}]*/

var foo = [bar,
  baz,
  qux
];

Examples of correct code for this rule with the 2, { "ArrayExpression": "first" } option:

/*eslint indent: ["error", 2, {"ArrayExpression": "first"}]*/

var foo = [bar,
           baz,
           qux
];

ObjectExpression

Examples of incorrect code for this rule with the 2, { "ObjectExpression": 1 } option:

/*eslint indent: ["error", 2, { "ObjectExpression": 1 }]*/

var foo = {
    bar: 1,
baz: 2,
      qux: 3
};

Examples of correct code for this rule with the 2, { "ObjectExpression": 1 } option:

/*eslint indent: ["error", 2, { "ObjectExpression": 1 }]*/

var foo = {
  bar: 1,
  baz: 2,
  qux: 3
};

Examples of incorrect code for this rule with the 2, { "ObjectExpression": "first" } option:

/*eslint indent: ["error", 2, {"ObjectExpression": "first"}]*/

var foo = { bar: 1,
  baz: 2 };

Examples of correct code for this rule with the 2, { "ObjectExpression": "first" } option:

/*eslint indent: ["error", 2, {"ObjectExpression": "first"}]*/

var foo = { bar: 1,
            baz: 2 };

Compatibility

All 'var' declarations must be at the top of the function scope.
Open

var _regenerator = require('babel-runtime/regenerator');

Require Variable Declarations to be at the top of their scope (vars-on-top)

The vars-on-top rule generates warnings when variable declarations are not used serially at the top of a function scope or the top of a program. By default variable declarations are always moved (“hoisted”) invisibly to the top of their containing scope by the JavaScript interpreter. This rule forces the programmer to represent that behaviour by manually moving the variable declaration to the top of its containing scope.

Rule Details

This rule aims to keep all variable declarations in the leading series of statements. Allowing multiple declarations helps promote maintainability and is thus allowed.

Examples of incorrect code for this rule:

/*eslint vars-on-top: "error"*/

// Variable declarations in a block:
function doSomething() {
    var first;
    if (true) {
        first = true;
    }
    var second;
}

// Variable declaration in for initializer:
function doSomething() {
    for (var i=0; i<10; i++) {}
}
/*eslint vars-on-top: "error"*/

// Variables after other statements:
f();
var a;

Examples of correct code for this rule:

/*eslint vars-on-top: "error"*/

function doSomething() {
    var first;
    var second; //multiple declarations are allowed at the top
    if (true) {
        first = true;
    }
}

function doSomething() {
    var i;
    for (i=0; i<10; i++) {}
}
/*eslint vars-on-top: "error"*/

var a;
f();
/*eslint vars-on-top: "error"*/

// Directives may precede variable declarations.
"use strict";
var a;
f();

// Comments can describe variables.
function doSomething() {
    // this is the first var.
    var first;
    // this is the second var.
    var second
}

Further Reading

Missing JSDoc comment.
Open

function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; }

require JSDoc comments (require-jsdoc)

JSDoc is a JavaScript API documentation generator. It uses specially-formatted comments inside of code to generate API documentation automatically. For example, this is what a JSDoc comment looks like for a function:

/**
 * Adds two numbers together.
 * @param {int} num1 The first number.
 * @param {int} num2 The second number.
 * @returns {int} The sum of the two numbers.
 */
function sum(num1, num2) {
    return num1 + num2;
}

Some style guides require JSDoc comments for all functions as a way of explaining function behavior.

Rule Details

This rule requires JSDoc comments for specified nodes. Supported nodes:

  • "FunctionDeclaration"
  • "ClassDeclaration"
  • "MethodDefinition"
  • "ArrowFunctionExpression"

Options

This rule has a single object option:

  • "require" requires JSDoc comments for the specified nodes

Default option settings are:

{
    "require-jsdoc": ["error", {
        "require": {
            "FunctionDeclaration": true,
            "MethodDefinition": false,
            "ClassDeclaration": false,
            "ArrowFunctionExpression": false
        }
    }]
}

require

Examples of incorrect code for this rule with the { "require": { "FunctionDeclaration": true, "MethodDefinition": true, "ClassDeclaration": true, "ArrowFunctionExpression": true } } option:

/*eslint "require-jsdoc": ["error", {
    "require": {
        "FunctionDeclaration": true,
        "MethodDefinition": true,
        "ClassDeclaration": true
    }
}]*/

function foo() {
    return 10;
}

var foo = () => {
    return 10;
}

class Test{
    getDate(){}
}

Examples of correct code for this rule with the { "require": { "FunctionDeclaration": true, "MethodDefinition": true, "ClassDeclaration": true, "ArrowFunctionExpression": true } } option:

/*eslint "require-jsdoc": ["error", {
    "require": {
        "FunctionDeclaration": true,
        "MethodDefinition": true,
        "ClassDeclaration": true
    }
}]*/

/**
 * It returns 10
 */
function foo() {
    return 10;
}

/**
 * It returns test + 10
 * @params {int} test - some number
 * @returns {int} sum of test and 10
 */
var foo = (test) => {
    return test + 10;
}

/**
 * It returns 10
 */
var foo = () => {
    return 10;
}

/**
 * It returns 10
 */
var foo = function() {
    return 10;
}

var array = [1,2,3];
array.filter(function(item) {
    return item > 2;
});

/**
 * It returns 10
 */
class Test{
    /**
    * returns the date
    */
    getDate(){}
}

setTimeout(() => {}, 10); // since it's an anonymous arrow function

When Not To Use It

If you do not require JSDoc for your functions, then you can leave this rule off.

Related Rules

Unexpected var, use let or const instead.
Open

var _asyncToGenerator3 = _interopRequireDefault(_asyncToGenerator2);

require let or const instead of var (no-var)

ECMAScript 6 allows programmers to create variables with block scope instead of function scope using the let and const keywords. Block scope is common in many other programming languages and helps programmers avoid mistakes such as:

var count = people.length;
var enoughFood = count > sandwiches.length;

if (enoughFood) {
    var count = sandwiches.length; // accidentally overriding the count variable
    console.log("We have " + count + " sandwiches for everyone. Plenty for all!");
}

// our count variable is no longer accurate
console.log("We have " + count + " people and " + sandwiches.length + " sandwiches!");

Rule Details

This rule is aimed at discouraging the use of var and encouraging the use of const or let instead.

Examples

Examples of incorrect code for this rule:

/*eslint no-var: "error"*/

var x = "y";
var CONFIG = {};

Examples of correct code for this rule:

/*eslint no-var: "error"*/
/*eslint-env es6*/

let x = "y";
const CONFIG = {};

When Not To Use It

In addition to non-ES6 environments, existing JavaScript projects that are beginning to introduce ES6 into their codebase may not want to apply this rule if the cost of migrating from var to let is too costly. Source: http://eslint.org/docs/rules/

All 'var' declarations must be at the top of the function scope.
Open

var _createClass2 = require('babel-runtime/helpers/createClass');

Require Variable Declarations to be at the top of their scope (vars-on-top)

The vars-on-top rule generates warnings when variable declarations are not used serially at the top of a function scope or the top of a program. By default variable declarations are always moved (“hoisted”) invisibly to the top of their containing scope by the JavaScript interpreter. This rule forces the programmer to represent that behaviour by manually moving the variable declaration to the top of its containing scope.

Rule Details

This rule aims to keep all variable declarations in the leading series of statements. Allowing multiple declarations helps promote maintainability and is thus allowed.

Examples of incorrect code for this rule:

/*eslint vars-on-top: "error"*/

// Variable declarations in a block:
function doSomething() {
    var first;
    if (true) {
        first = true;
    }
    var second;
}

// Variable declaration in for initializer:
function doSomething() {
    for (var i=0; i<10; i++) {}
}
/*eslint vars-on-top: "error"*/

// Variables after other statements:
f();
var a;

Examples of correct code for this rule:

/*eslint vars-on-top: "error"*/

function doSomething() {
    var first;
    var second; //multiple declarations are allowed at the top
    if (true) {
        first = true;
    }
}

function doSomething() {
    var i;
    for (i=0; i<10; i++) {}
}
/*eslint vars-on-top: "error"*/

var a;
f();
/*eslint vars-on-top: "error"*/

// Directives may precede variable declarations.
"use strict";
var a;
f();

// Comments can describe variables.
function doSomething() {
    // this is the first var.
    var first;
    // this is the second var.
    var second
}

Further Reading

'NamedKernelManagerGhostModule' is assigned a value but never used.
Open

var NamedKernelManagerGhostModule = exports.NamedKernelManagerGhostModule = function () {

Disallow Unused Variables (no-unused-vars)

Variables that are declared and not used anywhere in the code are most likely an error due to incomplete refactoring. Such variables take up space in the code and can lead to confusion by readers.

Rule Details

This rule is aimed at eliminating unused variables, functions, and parameters of functions.

A variable is considered to be used if any of the following are true:

  • It represents a function that is called (doSomething())
  • It is read (var y = x)
  • It is passed into a function as an argument (doSomething(x))
  • It is read inside of a function that is passed to another function (doSomething(function() { foo(); }))

A variable is not considered to be used if it is only ever assigned to (var x = 5) or declared.

Examples of incorrect code for this rule:

/*eslint no-unused-vars: "error"*/
/*global some_unused_var*/

// It checks variables you have defined as global
some_unused_var = 42;

var x;

// Write-only variables are not considered as used.
var y = 10;
y = 5;

// A read for a modification of itself is not considered as used.
var z = 0;
z = z + 1;

// By default, unused arguments cause warnings.
(function(foo) {
    return 5;
})();

// Unused recursive functions also cause warnings.
function fact(n) {
    if (n < 2) return 1;
    return n * fact(n - 1);
}

// When a function definition destructures an array, unused entries from the array also cause warnings.
function getY([x, y]) {
    return y;
}

Examples of correct code for this rule:

/*eslint no-unused-vars: "error"*/

var x = 10;
alert(x);

// foo is considered used here
myFunc(function foo() {
    // ...
}.bind(this));

(function(foo) {
    return foo;
})();

var myFunc;
myFunc = setTimeout(function() {
    // myFunc is considered used
    myFunc();
}, 50);

// Only the second argument from the descructured array is used.
function getY([, y]) {
    return y;
}

exported

In environments outside of CommonJS or ECMAScript modules, you may use var to create a global variable that may be used by other scripts. You can use the /* exported variableName */ comment block to indicate that this variable is being exported and therefore should not be considered unused.

Note that /* exported */ has no effect for any of the following:

  • when the environment is node or commonjs
  • when parserOptions.sourceType is module
  • when ecmaFeatures.globalReturn is true

The line comment // exported variableName will not work as exported is not line-specific.

Examples of correct code for /* exported variableName */ operation:

/* exported global_var */

var global_var = 42;

Options

This rule takes one argument which can be a string or an object. The string settings are the same as those of the vars property (explained below).

By default this rule is enabled with all option for variables and after-used for arguments.

{
    "rules": {
        "no-unused-vars": ["error", { "vars": "all", "args": "after-used", "ignoreRestSiblings": false }]
    }
}

vars

The vars option has two settings:

  • all checks all variables for usage, including those in the global scope. This is the default setting.
  • local checks only that locally-declared variables are used but will allow global variables to be unused.

vars: local

Examples of correct code for the { "vars": "local" } option:

/*eslint no-unused-vars: ["error", { "vars": "local" }]*/
/*global some_unused_var */

some_unused_var = 42;

varsIgnorePattern

The varsIgnorePattern option specifies exceptions not to check for usage: variables whose names match a regexp pattern. For example, variables whose names contain ignored or Ignored.

Examples of correct code for the { "varsIgnorePattern": "[iI]gnored" } option:

/*eslint no-unused-vars: ["error", { "varsIgnorePattern": "[iI]gnored" }]*/

var firstVarIgnored = 1;
var secondVar = 2;
console.log(secondVar);

args

The args option has three settings:

  • after-used - only the last argument must be used. This allows you, for instance, to have two named parameters to a function and as long as you use the second argument, ESLint will not warn you about the first. This is the default setting.
  • all - all named arguments must be used.
  • none - do not check arguments.

args: after-used

Examples of incorrect code for the default { "args": "after-used" } option:

/*eslint no-unused-vars: ["error", { "args": "after-used" }]*/

// 1 error
// "baz" is defined but never used
(function(foo, bar, baz) {
    return bar;
})();

Examples of correct code for the default { "args": "after-used" } option:

/*eslint no-unused-vars: ["error", {"args": "after-used"}]*/

(function(foo, bar, baz) {
    return baz;
})();

args: all

Examples of incorrect code for the { "args": "all" } option:

/*eslint no-unused-vars: ["error", { "args": "all" }]*/

// 2 errors
// "foo" is defined but never used
// "baz" is defined but never used
(function(foo, bar, baz) {
    return bar;
})();

args: none

Examples of correct code for the { "args": "none" } option:

/*eslint no-unused-vars: ["error", { "args": "none" }]*/

(function(foo, bar, baz) {
    return bar;
})();

ignoreRestSiblings

The ignoreRestSiblings option is a boolean (default: false). Using a Rest Property it is possible to "omit" properties from an object, but by default the sibling properties are marked as "unused". With this option enabled the rest property's siblings are ignored.

Examples of correct code for the { "ignoreRestSiblings": true } option:

/*eslint no-unused-vars: ["error", { "ignoreRestSiblings": true }]*/
// 'type' is ignored because it has a rest property sibling.
var { type, ...coords } = data;

argsIgnorePattern

The argsIgnorePattern option specifies exceptions not to check for usage: arguments whose names match a regexp pattern. For example, variables whose names begin with an underscore.

Examples of correct code for the { "argsIgnorePattern": "^_" } option:

/*eslint no-unused-vars: ["error", { "argsIgnorePattern": "^_" }]*/

function foo(x, _y) {
    return x + 1;
}
foo();

caughtErrors

The caughtErrors option is used for catch block arguments validation.

It has two settings:

  • none - do not check error objects. This is the default setting.
  • all - all named arguments must be used.

caughtErrors: none

Not specifying this rule is equivalent of assigning it to none.

Examples of correct code for the { "caughtErrors": "none" } option:

/*eslint no-unused-vars: ["error", { "caughtErrors": "none" }]*/

try {
    //...
} catch (err) {
    console.error("errors");
}

caughtErrors: all

Examples of incorrect code for the { "caughtErrors": "all" } option:

/*eslint no-unused-vars: ["error", { "caughtErrors": "all" }]*/

// 1 error
// "err" is defined but never used
try {
    //...
} catch (err) {
    console.error("errors");
}

caughtErrorsIgnorePattern

The caughtErrorsIgnorePattern option specifies exceptions not to check for usage: catch arguments whose names match a regexp pattern. For example, variables whose names begin with a string 'ignore'.

Examples of correct code for the { "caughtErrorsIgnorePattern": "^ignore" } option:

/*eslint no-unused-vars: ["error", { "caughtErrorsIgnorePattern": "^ignore" }]*/

try {
    //...
} catch (ignoreErr) {
    console.error("errors");
}

When Not To Use It

If you don't want to be notified about unused variables or function arguments, you can safely turn this rule off. Source: http://eslint.org/docs/rules/

Unexpected 'this'.
Open

                if (!this.isKernelExists(namedId)) {

Disallow this keywords outside of classes or class-like objects. (no-invalid-this)

Under the strict mode, this keywords outside of classes or class-like objects might be undefined and raise a TypeError.

Rule Details

This rule aims to flag usage of this keywords outside of classes or class-like objects.

Basically this rule checks whether or not a function which are containing this keywords is a constructor or a method.

This rule judges from following conditions whether or not the function is a constructor:

  • The name of the function starts with uppercase.
  • The function is assigned to a variable which starts with an uppercase letter.
  • The function is a constructor of ES2015 Classes.

This rule judges from following conditions whether or not the function is a method:

  • The function is on an object literal.
  • The function is assigned to a property.
  • The function is a method/getter/setter of ES2015 Classes. (excepts static methods)

And this rule allows this keywords in functions below:

  • The call/apply/bind method of the function is called directly.
  • The function is a callback of array methods (such as .forEach()) if thisArg is given.
  • The function has @this tag in its JSDoc comment.

Otherwise are considered problems.

This rule applies only in strict mode. With "parserOptions": { "sourceType": "module" } in the ESLint configuration, your code is in strict mode even without a "use strict" directive.

Examples of incorrect code for this rule in strict mode:

/*eslint no-invalid-this: "error"*/
/*eslint-env es6*/

"use strict";

this.a = 0;
baz(() => this);

(function() {
    this.a = 0;
    baz(() => this);
})();

function foo() {
    this.a = 0;
    baz(() => this);
}

var foo = function() {
    this.a = 0;
    baz(() => this);
};

foo(function() {
    this.a = 0;
    baz(() => this);
});

obj.foo = () => {
    // `this` of arrow functions is the outer scope's.
    this.a = 0;
};

var obj = {
    aaa: function() {
        return function foo() {
            // There is in a method `aaa`, but `foo` is not a method.
            this.a = 0;
            baz(() => this);
        };
    }
};

foo.forEach(function() {
    this.a = 0;
    baz(() => this);
});

Examples of correct code for this rule in strict mode:

/*eslint no-invalid-this: "error"*/
/*eslint-env es6*/

"use strict";

function Foo() {
    // OK, this is in a legacy style constructor.
    this.a = 0;
    baz(() => this);
}

class Foo {
    constructor() {
        // OK, this is in a constructor.
        this.a = 0;
        baz(() => this);
    }
}

var obj = {
    foo: function foo() {
        // OK, this is in a method (this function is on object literal).
        this.a = 0;
    }
};

var obj = {
    foo() {
        // OK, this is in a method (this function is on object literal).
        this.a = 0;
    }
};

var obj = {
    get foo() {
        // OK, this is in a method (this function is on object literal).
        return this.a;
    }
};

var obj = Object.create(null, {
    foo: {value: function foo() {
        // OK, this is in a method (this function is on object literal).
        this.a = 0;
    }}
});

Object.defineProperty(obj, "foo", {
    value: function foo() {
        // OK, this is in a method (this function is on object literal).
        this.a = 0;
    }
});

Object.defineProperties(obj, {
    foo: {value: function foo() {
        // OK, this is in a method (this function is on object literal).
        this.a = 0;
    }}
});

function Foo() {
    this.foo = function foo() {
        // OK, this is in a method (this function assigns to a property).
        this.a = 0;
        baz(() => this);
    };
}

obj.foo = function foo() {
    // OK, this is in a method (this function assigns to a property).
    this.a = 0;
};

Foo.prototype.foo = function foo() {
    // OK, this is in a method (this function assigns to a property).
    this.a = 0;
};

class Foo {
    foo() {
        // OK, this is in a method.
        this.a = 0;
        baz(() => this);
    }

    static foo() {
        // OK, this is in a method (static methods also have valid this).
        this.a = 0;
        baz(() => this);
    }
}

var foo = (function foo() {
    // OK, the `bind` method of this function is called directly.
    this.a = 0;
}).bind(obj);

foo.forEach(function() {
    // OK, `thisArg` of `.forEach()` is given.
    this.a = 0;
    baz(() => this);
}, thisArg);

/** @this Foo */
function foo() {
    // OK, this function has a `@this` tag in its JSDoc comment.
    this.a = 0;
}

When Not To Use It

If you don't want to be notified about usage of this keyword outside of classes or class-like objects, you can safely disable this rule. Source: http://eslint.org/docs/rules/

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

    /**

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

Unexpected var, use let or const instead.
Open

      var _ref = (0, _asyncToGenerator3.default)(_regenerator2.default.mark(function _callee(namedId, profile, routes, controllers, GhostViewClass) {

require let or const instead of var (no-var)

ECMAScript 6 allows programmers to create variables with block scope instead of function scope using the let and const keywords. Block scope is common in many other programming languages and helps programmers avoid mistakes such as:

var count = people.length;
var enoughFood = count > sandwiches.length;

if (enoughFood) {
    var count = sandwiches.length; // accidentally overriding the count variable
    console.log("We have " + count + " sandwiches for everyone. Plenty for all!");
}

// our count variable is no longer accurate
console.log("We have " + count + " people and " + sandwiches.length + " sandwiches!");

Rule Details

This rule is aimed at discouraging the use of var and encouraging the use of const or let instead.

Examples

Examples of incorrect code for this rule:

/*eslint no-var: "error"*/

var x = "y";
var CONFIG = {};

Examples of correct code for this rule:

/*eslint no-var: "error"*/
/*eslint-env es6*/

let x = "y";
const CONFIG = {};

When Not To Use It

In addition to non-ES6 environments, existing JavaScript projects that are beginning to introduce ES6 into their codebase may not want to apply this rule if the cost of migrating from var to let is too costly. Source: http://eslint.org/docs/rules/

No magic number: 7.
Open

              case 7:

Disallow Magic Numbers (no-magic-numbers)

'Magic numbers' are numbers that occur multiple time in code without an explicit meaning. They should preferably be replaced by named constants.

var now = Date.now(),
    inOneHour = now + (60 * 60 * 1000);

Rule Details

The no-magic-numbers rule aims to make code more readable and refactoring easier by ensuring that special numbers are declared as constants to make their meaning explicit.

Examples of incorrect code for this rule:

/*eslint no-magic-numbers: "error"*/

var dutyFreePrice = 100,
    finalPrice = dutyFreePrice + (dutyFreePrice * 0.25);
/*eslint no-magic-numbers: "error"*/

var data = ['foo', 'bar', 'baz'];

var dataLast = data[2];
/*eslint no-magic-numbers: "error"*/

var SECONDS;

SECONDS = 60;

Examples of correct code for this rule:

/*eslint no-magic-numbers: "error"*/

var TAX = 0.25;

var dutyFreePrice = 100,
    finalPrice = dutyFreePrice + (dutyFreePrice * TAX);

Options

ignore

An array of numbers to ignore. It's set to [] by default. If provided, it must be an Array.

Examples of correct code for the sample { "ignore": [1] } option:

/*eslint no-magic-numbers: ["error", { "ignore": [1] }]*/

var data = ['foo', 'bar', 'baz'];
var dataLast = data.length && data[data.length - 1];

ignoreArrayIndexes

A boolean to specify if numbers used as array indexes are considered okay. false by default.

Examples of correct code for the { "ignoreArrayIndexes": true } option:

/*eslint no-magic-numbers: ["error", { "ignoreArrayIndexes": true }]*/

var data = ['foo', 'bar', 'baz'];
var dataLast = data[2];

enforceConst

A boolean to specify if we should check for the const keyword in variable declaration of numbers. false by default.

Examples of incorrect code for the { "enforceConst": true } option:

/*eslint no-magic-numbers: ["error", { "enforceConst": true }]*/

var TAX = 0.25;

var dutyFreePrice = 100,
    finalPrice = dutyFreePrice + (dutyFreePrice * TAX);

detectObjects

A boolean to specify if we should detect numbers when setting object properties for example. false by default.

Examples of incorrect code for the { "detectObjects": true } option:

/*eslint no-magic-numbers: ["error", { "detectObjects": true }]*/

var magic = {
  tax: 0.25
};

var dutyFreePrice = 100,
    finalPrice = dutyFreePrice + (dutyFreePrice * magic.tax);

Examples of correct code for the { "detectObjects": true } option:

/*eslint no-magic-numbers: ["error", { "detectObjects": true }]*/

var TAX = 0.25;

var magic = {
  tax: TAX
};

var dutyFreePrice = 100,
    finalPrice = dutyFreePrice + (dutyFreePrice * magic.tax);

Source: http://eslint.org/docs/rules/

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

  /**

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

   * @param {string} namedId - named id

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

    const shell = new GhostViewClass.Shell(directory.asArrayBuffer());

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

    this.emit('install_begin', target);

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

    try {

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

'NarLoader' is not defined.
Open

        nar = await NarLoader.loadFromURL(target);

Disallow Undeclared Variables (no-undef)

This rule can help you locate potential ReferenceErrors resulting from misspellings of variable and parameter names, or accidental implicit globals (for example, from forgetting the var keyword in a for loop initializer).

Rule Details

Any reference to an undeclared variable causes a warning, unless the variable is explicitly mentioned in a /*global ...*/ comment.

Examples of incorrect code for this rule:

/*eslint no-undef: "error"*/

var a = someFunction();
b = 10;

Examples of correct code for this rule with global declaration:

/*global someFunction b:true*/
/*eslint no-undef: "error"*/

var a = someFunction();
b = 10;

The b:true syntax in /*global */ indicates that assignment to b is correct.

Examples of incorrect code for this rule with global declaration:

/*global b*/
/*eslint no-undef: "error"*/

b = 10;

By default, variables declared in /*global */ are read-only, therefore assignment is incorrect.

Options

  • typeof set to true will warn for variables used inside typeof check (Default false).

typeof

Examples of correct code for the default { "typeof": false } option:

/*eslint no-undef: "error"*/

if (typeof UndefinedIdentifier === "undefined") {
    // do something ...
}

You can use this option if you want to prevent typeof check on a variable which has not been declared.

Examples of incorrect code for the { "typeof": true } option:

/*eslint no-undef: ["error", { "typeof": true }] */

if(typeof a === "string"){}

Examples of correct code for the { "typeof": true } option with global declaration:

/*global a*/
/*eslint no-undef: ["error", { "typeof": true }] */

if(typeof a === "string"){}

Environments

For convenience, ESLint provides shortcuts that pre-define global variables exposed by popular libraries and runtime environments. This rule supports these environments, as listed in Specifying Environments. A few examples are given below.

browser

Examples of correct code for this rule with browser environment:

/*eslint no-undef: "error"*/
/*eslint-env browser*/

setTimeout(function() {
    alert("Hello");
});

node

Examples of correct code for this rule with node environment:

/*eslint no-undef: "error"*/
/*eslint-env node*/

var fs = require("fs");
module.exports = function() {
    console.log(fs);
};

When Not To Use It

If explicit declaration of global variables is not to your taste.

Compatibility

This rule provides compatibility with treatment of global variables in JSHint and JSLint. Source: http://eslint.org/docs/rules/

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

        sakuraname = nanikaStorage.ghost_descript(dirpath)['sakura.name'];

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

Expected linebreaks to be 'LF' but found 'CRLF'.
Open

      }

enforce consistent linebreak style (linebreak-style)

When developing with a lot of people all having different editors, VCS applications and operating systems it may occur that different line endings are written by either of the mentioned (might especially happen when using the windows and mac versions of SourceTree together).

The linebreaks (new lines) used in windows operating system are usually carriage returns (CR) followed by a line feed (LF) making it a carriage return line feed (CRLF) whereas Linux and Unix use a simple line feed (LF). The corresponding control sequences are "\n" (for LF) and "\r\n" for (CRLF).

Many versioning systems (like git and subversion) can automatically ensure the correct ending. However to cover all contingencies, you can activate this rule.

Rule Details

This rule enforces consistent line endings independent of operating system, VCS, or editor used across your codebase.

Options

This rule has a string option:

  • "unix" (default) enforces the usage of Unix line endings: \n for LF.
  • "windows" enforces the usage of Windows line endings: \r\n for CRLF.

unix

Examples of incorrect code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a'; // \r\n

Examples of correct code for this rule with the default "unix" option:

/*eslint linebreak-style: ["error", "unix"]*/

var a = 'a', // \n
    b = 'b'; // \n
// \n
function foo(params) { // \n
    // do stuff \n
}// \n

windows

Examples of incorrect code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a'; // \n

Examples of correct code for this rule with the "windows" option:

/*eslint linebreak-style: ["error", "windows"]*/

var a = 'a', // \r\n
    b = 'b'; // \r\n
// \r\n
function foo(params) { // \r\n
    // do stuff \r\n
} // \r\n

Using this rule with version control systems

Version control systems sometimes have special behavior for linebreaks. To make it easy for developers to contribute to your codebase from different platforms, you may want to configure your VCS to handle linebreaks appropriately.

For example, the default behavior of git on Windows systems is to convert LF linebreaks to CRLF when checking out files, but to store the linebreaks as LF when committing a change. This will cause the linebreak-style rule to report errors if configured with the "unix" setting, because the files that ESLint sees will have CRLF linebreaks. If you use git, you may want to add a line to your .gitattributes file to prevent git from converting linebreaks in .js files:

*.js text eol=lf

When Not To Use It

If you aren't concerned about having different line endings within your code, then you can safely turn this rule off.

Compatibility

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