EngineTests.cs 33 KB

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  1. using System;
  2. using System.Globalization;
  3. using System.IO;
  4. using System.Reflection;
  5. using System.Threading;
  6. using Jint.Native.Number;
  7. using Jint.Parser;
  8. using Jint.Parser.Ast;
  9. using Jint.Runtime;
  10. using Xunit;
  11. using Xunit.Extensions;
  12. using System.Net;
  13. namespace Jint.Tests.Runtime
  14. {
  15. public class EngineTests : IDisposable
  16. {
  17. private readonly Engine _engine;
  18. public EngineTests()
  19. {
  20. _engine = new Engine()
  21. .SetValue("log", new Action<object>(Console.WriteLine))
  22. .SetValue("assert", new Action<bool>(Assert.True))
  23. ;
  24. }
  25. void IDisposable.Dispose()
  26. {
  27. }
  28. private void RunTest(string source)
  29. {
  30. _engine.Execute(source);
  31. }
  32. [Theory]
  33. [InlineData("Scratch.js")]
  34. public void ShouldInterpretScriptFile(string file)
  35. {
  36. const string prefix = "Jint.Tests.Runtime.Scripts.";
  37. var assembly = Assembly.GetExecutingAssembly();
  38. var scriptPath = prefix + file;
  39. using (var stream = assembly.GetManifestResourceStream(scriptPath))
  40. if (stream != null)
  41. using (var sr = new StreamReader(stream))
  42. {
  43. var source = sr.ReadToEnd();
  44. RunTest(source);
  45. }
  46. }
  47. [Theory]
  48. [InlineData(42d, "42")]
  49. [InlineData("Hello", "'Hello'")]
  50. public void ShouldInterpretLiterals(object expected, string source)
  51. {
  52. var engine = new Engine();
  53. var result = engine.Execute(source).GetCompletionValue().ToObject();
  54. Assert.Equal(expected, result);
  55. }
  56. [Fact]
  57. public void ShouldInterpretVariableDeclaration()
  58. {
  59. var engine = new Engine();
  60. var result = engine
  61. .Execute("var foo = 'bar'; foo;")
  62. .GetCompletionValue()
  63. .ToObject();
  64. Assert.Equal("bar", result);
  65. }
  66. [Theory]
  67. [InlineData(4d, "1 + 3")]
  68. [InlineData(-2d, "1 - 3")]
  69. [InlineData(3d, "1 * 3")]
  70. [InlineData(2d, "6 / 3")]
  71. [InlineData(9d, "15 & 9")]
  72. [InlineData(15d, "15 | 9")]
  73. [InlineData(6d, "15 ^ 9")]
  74. [InlineData(36d, "9 << 2")]
  75. [InlineData(2d, "9 >> 2")]
  76. [InlineData(4d, "19 >>> 2")]
  77. public void ShouldInterpretBinaryExpression(object expected, string source)
  78. {
  79. var engine = new Engine();
  80. var result = engine.Execute(source).GetCompletionValue().ToObject();
  81. Assert.Equal(expected, result);
  82. }
  83. [Theory]
  84. [InlineData(-59d, "~58")]
  85. [InlineData(58d, "~~58")]
  86. public void ShouldInterpretUnaryExpression(object expected, string source)
  87. {
  88. var engine = new Engine();
  89. var result = engine.Execute(source).GetCompletionValue().ToObject();
  90. Assert.Equal(expected, result);
  91. }
  92. [Fact]
  93. public void ShouldEvaluateHasOwnProperty()
  94. {
  95. RunTest(@"
  96. var x = {};
  97. x.Bar = 42;
  98. assert(x.hasOwnProperty('Bar'));
  99. ");
  100. }
  101. [Fact]
  102. public void FunctionConstructorsShouldCreateNewObjects()
  103. {
  104. RunTest(@"
  105. var Vehicle = function () {};
  106. var vehicle = new Vehicle();
  107. assert(vehicle != undefined);
  108. ");
  109. }
  110. [Fact]
  111. public void NewObjectsInheritFunctionConstructorProperties()
  112. {
  113. RunTest(@"
  114. var Vehicle = function () {};
  115. var vehicle = new Vehicle();
  116. Vehicle.prototype.wheelCount = 4;
  117. assert(vehicle.wheelCount == 4);
  118. assert((new Vehicle()).wheelCount == 4);
  119. ");
  120. }
  121. [Fact]
  122. public void PrototypeFunctionIsInherited()
  123. {
  124. RunTest(@"
  125. function Body(mass){
  126. this.mass = mass;
  127. }
  128. Body.prototype.offsetMass = function(dm) {
  129. this.mass += dm;
  130. return this;
  131. }
  132. var b = new Body(36);
  133. b.offsetMass(6);
  134. assert(b.mass == 42);
  135. ");
  136. }
  137. [Fact]
  138. public void FunctionConstructorCall()
  139. {
  140. RunTest(@"
  141. function Body(mass){
  142. this.mass = mass;
  143. }
  144. var john = new Body(36);
  145. assert(john.mass == 36);
  146. ");
  147. }
  148. [Fact]
  149. public void NewObjectsShouldUsePrivateProperties()
  150. {
  151. RunTest(@"
  152. var Vehicle = function (color) {
  153. this.color = color;
  154. };
  155. var vehicle = new Vehicle('tan');
  156. assert(vehicle.color == 'tan');
  157. ");
  158. }
  159. [Fact]
  160. public void FunctionConstructorsShouldDefinePrototypeChain()
  161. {
  162. RunTest(@"
  163. function Vehicle() {};
  164. var vehicle = new Vehicle();
  165. assert(vehicle.hasOwnProperty('constructor') == false);
  166. ");
  167. }
  168. [Fact]
  169. public void NewObjectsConstructorIsObject()
  170. {
  171. RunTest(@"
  172. var o = new Object();
  173. assert(o.constructor == Object);
  174. ");
  175. }
  176. [Fact]
  177. public void NewObjectsIntanceOfConstructorObject()
  178. {
  179. RunTest(@"
  180. var o = new Object();
  181. assert(o instanceof Object);
  182. ");
  183. }
  184. [Fact]
  185. public void NewObjectsConstructorShouldBeConstructorObject()
  186. {
  187. RunTest(@"
  188. var Vehicle = function () {};
  189. var vehicle = new Vehicle();
  190. assert(vehicle.constructor == Vehicle);
  191. ");
  192. }
  193. [Fact]
  194. public void NewObjectsIntanceOfConstructorFunction()
  195. {
  196. RunTest(@"
  197. var Vehicle = function () {};
  198. var vehicle = new Vehicle();
  199. assert(vehicle instanceof Vehicle);
  200. ");
  201. }
  202. [Fact]
  203. public void ShouldEvaluateForLoops()
  204. {
  205. RunTest(@"
  206. var foo = 0;
  207. for (var i = 0; i < 5; i++) {
  208. foo += i;
  209. }
  210. assert(foo == 10);
  211. ");
  212. }
  213. [Fact]
  214. public void ShouldEvaluateRecursiveFunctions()
  215. {
  216. RunTest(@"
  217. function fib(n) {
  218. if (n < 2) {
  219. return n;
  220. }
  221. return fib(n - 1) + fib(n - 2);
  222. }
  223. var result = fib(6);
  224. assert(result == 8);
  225. ");
  226. }
  227. [Fact]
  228. public void ShouldAccessObjectProperties()
  229. {
  230. RunTest(@"
  231. var o = {};
  232. o.Foo = 'bar';
  233. o.Baz = 42;
  234. o.Blah = o.Foo + o.Baz;
  235. assert(o.Blah == 'bar42');
  236. ");
  237. }
  238. [Fact]
  239. public void ShouldConstructArray()
  240. {
  241. RunTest(@"
  242. var o = [];
  243. assert(o.length == 0);
  244. ");
  245. }
  246. [Fact]
  247. public void ArrayPushShouldIncrementLength()
  248. {
  249. RunTest(@"
  250. var o = [];
  251. o.push(1);
  252. assert(o.length == 1);
  253. ");
  254. }
  255. [Fact]
  256. public void ArrayFunctionInitializesLength()
  257. {
  258. RunTest(@"
  259. assert(Array(3).length == 3);
  260. assert(Array('3').length == 1);
  261. ");
  262. }
  263. [Fact]
  264. public void ArrayIndexerIsAssigned()
  265. {
  266. RunTest(@"
  267. var n = 8;
  268. var o = Array(n);
  269. for (var i = 0; i < n; i++) o[i] = i;
  270. assert(o[0] == 0);
  271. assert(o[7] == 7);
  272. ");
  273. }
  274. [Fact]
  275. public void ArrayPopShouldDecrementLength()
  276. {
  277. RunTest(@"
  278. var o = [42, 'foo'];
  279. var pop = o.pop();
  280. assert(o.length == 1);
  281. assert(pop == 'foo');
  282. ");
  283. }
  284. [Fact]
  285. public void ArrayConstructor()
  286. {
  287. RunTest(@"
  288. var o = [];
  289. assert(o.constructor == Array);
  290. ");
  291. }
  292. [Fact]
  293. public void DateConstructor()
  294. {
  295. RunTest(@"
  296. var o = new Date();
  297. assert(o.constructor == Date);
  298. assert(o.hasOwnProperty('constructor') == false);
  299. ");
  300. }
  301. [Fact]
  302. public void ShouldConvertDateToNumber()
  303. {
  304. RunTest(@"
  305. assert(Number(new Date(0)) === 0);
  306. ");
  307. }
  308. [Fact]
  309. public void DatePrimitiveValueShouldBeNaN()
  310. {
  311. RunTest(@"
  312. assert(isNaN(Date.prototype.valueOf()));
  313. ");
  314. }
  315. [Fact]
  316. public void MathObjectIsDefined()
  317. {
  318. RunTest(@"
  319. var o = Math.abs(-1)
  320. assert(o == 1);
  321. ");
  322. }
  323. [Fact]
  324. public void VoidShouldReturnUndefined()
  325. {
  326. RunTest(@"
  327. assert(void 0 === undefined);
  328. var x = '1';
  329. assert(void x === undefined);
  330. x = 'x';
  331. assert (isNaN(void x) === true);
  332. x = new String('-1');
  333. assert (void x === undefined);
  334. ");
  335. }
  336. [Fact]
  337. public void TypeofObjectShouldReturnString()
  338. {
  339. RunTest(@"
  340. assert(typeof x === 'undefined');
  341. assert(typeof 0 === 'number');
  342. var x = 0;
  343. assert (typeof x === 'number');
  344. var x = new Object();
  345. assert (typeof x === 'object');
  346. ");
  347. }
  348. [Fact]
  349. public void MathAbsReturnsAbsolute()
  350. {
  351. RunTest(@"
  352. assert(1 == Math.abs(-1));
  353. ");
  354. }
  355. [Fact]
  356. public void NaNIsNan()
  357. {
  358. RunTest(@"
  359. var x = NaN;
  360. assert(isNaN(NaN));
  361. assert(isNaN(Math.abs(x)));
  362. ");
  363. }
  364. [Fact]
  365. public void ToNumberHandlesStringObject()
  366. {
  367. RunTest(@"
  368. x = new String('1');
  369. x *= undefined;
  370. assert(isNaN(x));
  371. ");
  372. }
  373. [Fact]
  374. public void FunctionScopesAreChained()
  375. {
  376. RunTest(@"
  377. var x = 0;
  378. function f1(){
  379. function f2(){
  380. return x;
  381. };
  382. return f2();
  383. var x = 1;
  384. }
  385. assert(f1() === undefined);
  386. ");
  387. }
  388. [Fact]
  389. public void EvalFunctionParseAndExecuteCode()
  390. {
  391. RunTest(@"
  392. var x = 0;
  393. eval('assert(x == 0)');
  394. ");
  395. }
  396. [Fact]
  397. public void ForInStatement()
  398. {
  399. RunTest(@"
  400. var x, y, str = '';
  401. for(var z in this) {
  402. str += z;
  403. }
  404. assert(str == 'xystrz');
  405. ");
  406. }
  407. [Fact]
  408. public void WithStatement()
  409. {
  410. RunTest(@"
  411. with (Math) {
  412. assert(cos(0) == 1);
  413. }
  414. ");
  415. }
  416. [Fact]
  417. public void ObjectExpression()
  418. {
  419. RunTest(@"
  420. var o = { x: 1 };
  421. assert(o.x == 1);
  422. ");
  423. }
  424. [Fact]
  425. public void StringFunctionCreatesString()
  426. {
  427. RunTest(@"
  428. assert(String(NaN) === 'NaN');
  429. ");
  430. }
  431. [Fact]
  432. public void ScopeChainInWithStatement()
  433. {
  434. RunTest(@"
  435. var x = 0;
  436. var myObj = {x : 'obj'};
  437. function f1(){
  438. var x = 1;
  439. function f2(){
  440. with(myObj){
  441. return x;
  442. }
  443. };
  444. return f2();
  445. }
  446. assert(f1() === 'obj');
  447. ");
  448. }
  449. [Fact]
  450. public void TryCatchBlockStatement()
  451. {
  452. RunTest(@"
  453. var x, y, z;
  454. try {
  455. x = 1;
  456. throw new TypeError();
  457. x = 2;
  458. }
  459. catch(e) {
  460. assert(x == 1);
  461. assert(e instanceof TypeError);
  462. y = 1;
  463. }
  464. finally {
  465. assert(x == 1);
  466. z = 1;
  467. }
  468. assert(x == 1);
  469. assert(y == 1);
  470. assert(z == 1);
  471. ");
  472. }
  473. [Fact]
  474. public void FunctionsCanBeAssigned()
  475. {
  476. RunTest(@"
  477. var sin = Math.sin;
  478. assert(sin(0) == 0);
  479. ");
  480. }
  481. [Fact]
  482. public void FunctionArgumentsIsDefined()
  483. {
  484. RunTest(@"
  485. function f() {
  486. assert(arguments.length > 0);
  487. }
  488. f(42);
  489. ");
  490. }
  491. [Fact]
  492. public void PrimitiveValueFunctions()
  493. {
  494. RunTest(@"
  495. var s = (1).toString();
  496. assert(s == '1');
  497. ");
  498. }
  499. [Theory]
  500. [InlineData(true, "'ab' == 'a' + 'b'")]
  501. public void OperatorsPrecedence(object expected, string source)
  502. {
  503. var engine = new Engine();
  504. var result = engine.Execute(source).GetCompletionValue().ToObject();
  505. Assert.Equal(expected, result);
  506. }
  507. [Fact]
  508. public void FunctionPrototypeShouldHaveApplyMethod()
  509. {
  510. RunTest(@"
  511. var numbers = [5, 6, 2, 3, 7];
  512. var max = Math.max.apply(null, numbers);
  513. assert(max == 7);
  514. ");
  515. }
  516. [Theory]
  517. [InlineData(double.NaN, "parseInt(NaN)")]
  518. [InlineData(double.NaN, "parseInt(null)")]
  519. [InlineData(double.NaN, "parseInt(undefined)")]
  520. [InlineData(double.NaN, "parseInt(new Boolean(true))")]
  521. [InlineData(double.NaN, "parseInt(Infinity)")]
  522. [InlineData(-1d, "parseInt(-1)")]
  523. [InlineData(-1d, "parseInt('-1')")]
  524. public void ShouldEvaluateParseInt(object expected, string source)
  525. {
  526. var engine = new Engine();
  527. var result = engine.Execute(source).GetCompletionValue().ToObject();
  528. Assert.Equal(expected, result);
  529. }
  530. [Fact]
  531. public void ShouldNotExecuteDebuggerStatement()
  532. {
  533. new Engine().Execute("debugger");
  534. }
  535. [Fact]
  536. public void ShouldThrowStatementCountOverflow()
  537. {
  538. Assert.Throws<StatementsCountOverflowException>(
  539. () => new Engine(cfg => cfg.MaxStatements(100)).Execute("while(true);")
  540. );
  541. }
  542. [Fact]
  543. public void ShouldThrowTimeout()
  544. {
  545. Assert.Throws<TimeoutException>(
  546. () => new Engine(cfg => cfg.TimeoutInterval(new TimeSpan(0, 0, 0, 0, 500))).Execute("while(true);")
  547. );
  548. }
  549. [Fact]
  550. public void CanDiscardRecursion()
  551. {
  552. var script = @"var factorial = function(n) {
  553. if (n>1) {
  554. return n * factorial(n - 1);
  555. }
  556. };
  557. var result = factorial(500);
  558. ";
  559. Assert.Throws<RecursionDepthOverflowException>(
  560. () => new Engine(cfg => cfg.LimitRecursion()).Execute(script)
  561. );
  562. }
  563. [Fact]
  564. public void ShouldDiscardHiddenRecursion()
  565. {
  566. var script = @"var renamedFunc;
  567. var exec = function(callback) {
  568. renamedFunc = callback;
  569. callback();
  570. };
  571. var result = exec(function() {
  572. renamedFunc();
  573. });
  574. ";
  575. Assert.Throws<RecursionDepthOverflowException>(
  576. () => new Engine(cfg => cfg.LimitRecursion()).Execute(script)
  577. );
  578. }
  579. [Fact]
  580. public void ShouldRecognizeAndDiscardChainedRecursion()
  581. {
  582. var script = @" var funcRoot, funcA, funcB, funcC, funcD;
  583. var funcRoot = function() {
  584. funcA();
  585. };
  586. var funcA = function() {
  587. funcB();
  588. };
  589. var funcB = function() {
  590. funcC();
  591. };
  592. var funcC = function() {
  593. funcD();
  594. };
  595. var funcD = function() {
  596. funcRoot();
  597. };
  598. funcRoot();
  599. ";
  600. Assert.Throws<RecursionDepthOverflowException>(
  601. () => new Engine(cfg => cfg.LimitRecursion()).Execute(script)
  602. );
  603. }
  604. [Fact]
  605. public void ShouldProvideCallChainWhenDiscardRecursion()
  606. {
  607. var script = @" var funcRoot, funcA, funcB, funcC, funcD;
  608. var funcRoot = function() {
  609. funcA();
  610. };
  611. var funcA = function() {
  612. funcB();
  613. };
  614. var funcB = function() {
  615. funcC();
  616. };
  617. var funcC = function() {
  618. funcD();
  619. };
  620. var funcD = function() {
  621. funcRoot();
  622. };
  623. funcRoot();
  624. ";
  625. RecursionDepthOverflowException exception = null;
  626. try
  627. {
  628. new Engine(cfg => cfg.LimitRecursion()).Execute(script);
  629. }
  630. catch (RecursionDepthOverflowException ex)
  631. {
  632. exception = ex;
  633. }
  634. Assert.NotNull(exception);
  635. Assert.Equal("funcRoot->funcA->funcB->funcC->funcD", exception.CallChain);
  636. Assert.Equal("funcRoot", exception.CallExpressionReference);
  637. }
  638. [Fact]
  639. public void ShouldAllowShallowRecursion()
  640. {
  641. var script = @"var factorial = function(n) {
  642. if (n>1) {
  643. return n * factorial(n - 1);
  644. }
  645. };
  646. var result = factorial(8);
  647. ";
  648. new Engine(cfg => cfg.LimitRecursion(20)).Execute(script);
  649. }
  650. [Fact]
  651. public void ShouldDiscardDeepRecursion()
  652. {
  653. var script = @"var factorial = function(n) {
  654. if (n>1) {
  655. return n * factorial(n - 1);
  656. }
  657. };
  658. var result = factorial(38);
  659. ";
  660. Assert.Throws<RecursionDepthOverflowException>(
  661. () => new Engine(cfg => cfg.LimitRecursion(20)).Execute(script)
  662. );
  663. }
  664. [Fact]
  665. public void ShouldConvertDoubleToStringWithoutLosingPrecision()
  666. {
  667. RunTest(@"
  668. assert(String(14.915832707045631) === '14.915832707045631');
  669. assert(String(-14.915832707045631) === '-14.915832707045631');
  670. assert(String(0.5) === '0.5');
  671. assert(String(0.00000001) === '1e-8');
  672. assert(String(0.000001) === '0.000001');
  673. assert(String(-1.0) === '-1');
  674. assert(String(30.0) === '30');
  675. assert(String(0.2388906159889881) === '0.2388906159889881');
  676. ");
  677. }
  678. [Fact]
  679. public void ShouldWriteNumbersUsingBases()
  680. {
  681. RunTest(@"
  682. assert(15.0.toString() === '15');
  683. assert(15.0.toString(2) === '1111');
  684. assert(15.0.toString(8) === '17');
  685. assert(15.0.toString(16) === 'f');
  686. assert(15.0.toString(17) === 'f');
  687. assert(15.0.toString(36) === 'f');
  688. assert(15.1.toString(36) === 'f.3llllllllkau6snqkpygsc3di');
  689. ");
  690. }
  691. [Fact]
  692. public void ShouldNotAlterSlashesInRegex()
  693. {
  694. RunTest(@"
  695. assert(new RegExp('/').toString() === '///');
  696. ");
  697. }
  698. [Fact]
  699. public void ShouldHandleEscapedSlashesInRegex()
  700. {
  701. RunTest(@"
  702. var regex = /[a-z]\/[a-z]/;
  703. assert(regex.test('a/b') === true);
  704. assert(regex.test('a\\/b') === false);
  705. ");
  706. }
  707. [Fact]
  708. public void ShouldComputeFractionInBase()
  709. {
  710. Assert.Equal("011", NumberPrototype.ToFractionBase(0.375, 2));
  711. Assert.Equal("14141414141414141414141414141414141414141414141414", NumberPrototype.ToFractionBase(0.375, 5));
  712. }
  713. [Fact]
  714. public void ShouldInvokeAFunctionValue()
  715. {
  716. RunTest(@"
  717. function add(x, y) { return x + y; }
  718. ");
  719. var add = _engine.GetValue("add");
  720. Assert.Equal(3, add.Invoke(1, 2));
  721. }
  722. [Fact]
  723. public void ShouldNotInvokeNonFunctionValue()
  724. {
  725. RunTest(@"
  726. var x= 10;
  727. ");
  728. var x = _engine.GetValue("x");
  729. Assert.Throws<ArgumentException>(() => x.Invoke(1, 2));
  730. }
  731. [Theory]
  732. [InlineData("0", 0, 16)]
  733. [InlineData("1", 1, 16)]
  734. [InlineData("100", 100, 10)]
  735. [InlineData("1100100", 100, 2)]
  736. [InlineData("2s", 100, 36)]
  737. [InlineData("2qgpckvng1s", 10000000000000000L, 36)]
  738. public void ShouldConvertNumbersToDifferentBase(string expected, long number, int radix)
  739. {
  740. var result = NumberPrototype.ToBase(number, radix);
  741. Assert.Equal(expected, result);
  742. }
  743. [Fact]
  744. public void JsonParserShouldParseNegativeNumber()
  745. {
  746. RunTest(@"
  747. var a = JSON.parse('{ ""x"":-1 }');
  748. assert(a.x === -1);
  749. var b = JSON.parse('{ ""x"": -1 }');
  750. assert(b.x === -1);
  751. ");
  752. }
  753. [Fact]
  754. public void JsonParserShouldDetectInvalidNegativeNumberSyntax()
  755. {
  756. RunTest(@"
  757. try {
  758. JSON.parse('{ ""x"": -.1 }'); // Not allowed
  759. assert(false);
  760. }
  761. catch(ex) {
  762. assert(ex instanceof SyntaxError);
  763. }
  764. ");
  765. RunTest(@"
  766. try {
  767. JSON.parse('{ ""x"": - 1 }'); // Not allowed
  768. assert(false);
  769. }
  770. catch(ex) {
  771. assert(ex instanceof SyntaxError);
  772. }
  773. ");
  774. }
  775. [Fact]
  776. public void ShouldBeCultureInvariant()
  777. {
  778. // decimals in french are separated by commas
  779. Thread.CurrentThread.CurrentCulture = CultureInfo.GetCultureInfo("fr-FR");
  780. var engine = new Engine();
  781. var result = engine.Execute("1.2 + 2.1").GetCompletionValue().AsNumber();
  782. Assert.Equal(3.3d, result);
  783. result = engine.Execute("JSON.parse('{\"x\" : 3.3}').x").GetCompletionValue().AsNumber();
  784. Assert.Equal(3.3d, result);
  785. }
  786. [Fact]
  787. public void ShouldGetTheLastSyntaxNode()
  788. {
  789. var engine = new Engine();
  790. engine.Execute("1.2");
  791. var result = engine.GetLastSyntaxNode();
  792. Assert.Equal(SyntaxNodes.Literal, result.Type);
  793. }
  794. [Fact]
  795. public void ShouldGetParseErrorLocation()
  796. {
  797. var engine = new Engine();
  798. try
  799. {
  800. engine.Execute("1.2+ new", new ParserOptions { Source = "jQuery.js" });
  801. }
  802. catch (ParserException e)
  803. {
  804. Assert.Equal(1, e.LineNumber);
  805. Assert.Equal(9, e.Column);
  806. Assert.Equal("jQuery.js", e.Source);
  807. }
  808. }
  809. [Fact]
  810. public void ParseShouldReturnNumber()
  811. {
  812. var engine = new Engine();
  813. var result = engine.Execute("Date.parse('1970-01-01');").GetCompletionValue().AsNumber();
  814. Assert.Equal(0, result);
  815. }
  816. [Fact]
  817. public void UtcShouldUseUtc()
  818. {
  819. const string customName = "Custom Time";
  820. var customTimeZone = TimeZoneInfo.CreateCustomTimeZone(customName, new TimeSpan(7, 11, 0), customName, customName, customName, null, false);
  821. var engine = new Engine(cfg => cfg.LocalTimeZone(customTimeZone));
  822. var result = engine.Execute("Date.UTC(1970,0,1)").GetCompletionValue().AsNumber();
  823. Assert.Equal(0, result);
  824. }
  825. [Fact]
  826. public void ShouldUseLocalTimeZoneOverride()
  827. {
  828. const string customName = "Custom Time";
  829. var customTimeZone = TimeZoneInfo.CreateCustomTimeZone(customName, new TimeSpan(0, 11, 0), customName, customName, customName, null, false);
  830. var engine = new Engine(cfg => cfg.LocalTimeZone(customTimeZone));
  831. var epochGetLocalMinutes = engine.Execute("var d = new Date(0); d.getMinutes();").GetCompletionValue().AsNumber();
  832. Assert.Equal(11, epochGetLocalMinutes);
  833. var localEpochGetUtcMinutes = engine.Execute("var d = new Date(1970,0,1); d.getUTCMinutes();").GetCompletionValue().AsNumber();
  834. Assert.Equal(-11, localEpochGetUtcMinutes);
  835. var parseLocalEpoch = engine.Execute("Date.parse('January 1, 1970');").GetCompletionValue().AsNumber();
  836. Assert.Equal(-11 * 60 * 1000, parseLocalEpoch);
  837. var epochToLocalString = engine.Execute("var d = new Date(0); d.toString();").GetCompletionValue().AsString();
  838. Assert.Equal("Thu Jan 01 1970 00:11:00 GMT", epochToLocalString);
  839. }
  840. [Theory]
  841. [InlineData("1970")]
  842. [InlineData("1970-01")]
  843. [InlineData("1970-01-01")]
  844. [InlineData("1970-01-01T00:00")]
  845. [InlineData("1970-01-01T00:00:00")]
  846. [InlineData("1970-01-01T00:00:00.000")]
  847. [InlineData("1970Z")]
  848. [InlineData("1970-1Z")]
  849. [InlineData("1970-1-1Z")]
  850. [InlineData("1970-1-1T0:0Z")]
  851. [InlineData("1970-1-1T0:0:0Z")]
  852. [InlineData("1970-1-1T0:0:0.0Z")]
  853. [InlineData("1970/1Z")]
  854. [InlineData("1970/1/1Z")]
  855. [InlineData("1970/1/1 0:0Z")]
  856. [InlineData("1970/1/1 0:0:0Z")]
  857. [InlineData("1970/1/1 0:0:0.0Z")]
  858. [InlineData("January 1, 1970 GMT")]
  859. [InlineData("1970-01-01T00:00:00.000-00:00")]
  860. public void ShouldParseAsUtc(string date)
  861. {
  862. const string customName = "Custom Time";
  863. var customTimeZone = TimeZoneInfo.CreateCustomTimeZone(customName, new TimeSpan(7, 11, 0), customName, customName, customName, null, false);
  864. var engine = new Engine(cfg => cfg.LocalTimeZone(customTimeZone));
  865. engine.SetValue("d", date);
  866. var result = engine.Execute("Date.parse(d);").GetCompletionValue().AsNumber();
  867. Assert.Equal(0, result);
  868. }
  869. [Theory]
  870. [InlineData("1970/01")]
  871. [InlineData("1970/01/01")]
  872. [InlineData("1970/01/01T00:00")]
  873. [InlineData("1970/01/01 00:00")]
  874. [InlineData("1970-1")]
  875. [InlineData("1970-1-1")]
  876. [InlineData("1970-1-1T0:0")]
  877. [InlineData("1970-1-1 0:0")]
  878. [InlineData("1970/1")]
  879. [InlineData("1970/1/1")]
  880. [InlineData("1970/1/1T0:0")]
  881. [InlineData("1970/1/1 0:0")]
  882. [InlineData("01-1970")]
  883. [InlineData("01-01-1970")]
  884. [InlineData("January 1, 1970")]
  885. [InlineData("1970-01-01T00:00:00.000+00:11")]
  886. public void ShouldParseAsLocalTime(string date)
  887. {
  888. const string customName = "Custom Time";
  889. var customTimeZone = TimeZoneInfo.CreateCustomTimeZone(customName, new TimeSpan(0, 11, 0), customName, customName, customName, null, false);
  890. var engine = new Engine(cfg => cfg.LocalTimeZone(customTimeZone)).SetValue("d", date);
  891. var result = engine.Execute("Date.parse(d);").GetCompletionValue().AsNumber();
  892. Assert.Equal(-11 * 60 * 1000, result);
  893. }
  894. [Fact]
  895. public void EmptyStringShouldMatchRegex()
  896. {
  897. RunTest(@"
  898. var regex = /^(?:$)/g;
  899. assert(''.match(regex) instanceof Array);
  900. ");
  901. }
  902. [Fact]
  903. public void ShouldExecuteHandlebars()
  904. {
  905. var url = "http://cdnjs.cloudflare.com/ajax/libs/handlebars.js/2.0.0/handlebars.js";
  906. var content = new WebClient().DownloadString(url);
  907. RunTest(content);
  908. RunTest(@"
  909. var source = 'Hello {{name}}';
  910. var template = Handlebars.compile(source);
  911. var context = {name: 'Paul'};
  912. var html = template(context);
  913. assert('Hello Paul' == html);
  914. ");
  915. }
  916. [Fact]
  917. public void DateParseReturnsNaN()
  918. {
  919. RunTest(@"
  920. var d = Date.parse('not a date');
  921. assert(isNaN(d));
  922. ");
  923. }
  924. [Fact]
  925. public void ShouldIgnoreHtmlComments()
  926. {
  927. RunTest(@"
  928. var d = Date.parse('not a date'); <!-- a comment -->
  929. assert(isNaN(d));
  930. ");
  931. }
  932. [Fact]
  933. public void DateShouldAllowEntireDotNetDateRange()
  934. {
  935. var engine = new Engine();
  936. var minValue = engine.Execute("new Date('0001-01-01T00:00:00.000')").GetCompletionValue().ToObject();
  937. Assert.Equal(new DateTime(1, 1, 1, 0, 0, 0, DateTimeKind.Utc), minValue);
  938. var maxValue = engine.Execute("new Date('9999-12-31T23:59:59.999')").GetCompletionValue().ToObject();
  939. Assert.Equal(new DateTime(9999, 12, 31, 23, 59, 59, 999, DateTimeKind.Utc), maxValue);
  940. }
  941. [Fact]
  942. public void ShouldConstructNewArrayWithInteger()
  943. {
  944. RunTest(@"
  945. var a = new Array(3);
  946. assert(a.length === 3);
  947. assert(a[0] == undefined);
  948. assert(a[1] == undefined);
  949. assert(a[2] == undefined);
  950. ");
  951. }
  952. [Fact]
  953. public void ShouldConstructNewArrayWithString()
  954. {
  955. RunTest(@"
  956. var a = new Array('foo');
  957. assert(a.length === 1);
  958. assert(a[0] === 'foo');
  959. ");
  960. }
  961. [Fact]
  962. public void ShouldThrowRangeExceptionWhenConstructedWithNonInteger()
  963. {
  964. RunTest(@"
  965. var result = false;
  966. try {
  967. var a = new Array(3.4);
  968. }
  969. catch(e) {
  970. result = e instanceof RangeError;
  971. }
  972. assert(result);
  973. ");
  974. }
  975. [Fact]
  976. public void ShouldInitializeArrayWithSingleIngegerValue()
  977. {
  978. RunTest(@"
  979. var a = [3];
  980. assert(a.length === 1);
  981. assert(a[0] === 3);
  982. ");
  983. }
  984. [Fact]
  985. public void ShouldInitializeJsonObjectArrayWithSingleIntegerValue()
  986. {
  987. RunTest(@"
  988. var x = JSON.parse('{ ""a"": [3] }');
  989. assert(x.a.length === 1);
  990. assert(x.a[0] === 3);
  991. ");
  992. }
  993. [Fact]
  994. public void ShouldInitializeJsonArrayWithSingleIntegerValue()
  995. {
  996. RunTest(@"
  997. var a = JSON.parse('[3]');
  998. assert(a.length === 1);
  999. assert(a[0] === 3);
  1000. ");
  1001. }
  1002. [Fact]
  1003. public void ShouldReturnTrueForEmptyIsNaNStatement()
  1004. {
  1005. RunTest(@"
  1006. assert(true === isNaN());
  1007. ");
  1008. }
  1009. [Theory]
  1010. [InlineData(4d, 0, "4")]
  1011. [InlineData(4d, 1, "4.0")]
  1012. [InlineData(4d, 2, "4.00")]
  1013. [InlineData(28.995, 2, "29.00")]
  1014. [InlineData(-28.995, 2, "-29.00")]
  1015. [InlineData(-28.495, 2, "-28.50")]
  1016. [InlineData(-28.445, 2, "-28.45")]
  1017. [InlineData(28.445, 2, "28.45")]
  1018. [InlineData(10.995, 0, "11")]
  1019. public void ShouldRoundToFixedDecimal(double number, int fractionDigits, string result)
  1020. {
  1021. var engine = new Engine();
  1022. var value = engine.Execute(
  1023. String.Format("new Number({0}).toFixed({1})",
  1024. number.ToString(CultureInfo.InvariantCulture),
  1025. fractionDigits.ToString(CultureInfo.InvariantCulture)))
  1026. .GetCompletionValue().ToObject();
  1027. Assert.Equal(value, result);
  1028. }
  1029. }
  1030. }