def test_call(self): jsi = JSInterpreter(''' function x() { return 2; } function y(a) { return x() + a; } function z() { return y(3); } ''') self.assertEqual(jsi.call_function('z'), 5)
def test_precedence(self): jsi = JSInterpreter(''' function x() { var a = [10, 20, 30, 40, 50]; var b = 6; a[0]=a[b%a.length]; return a; }''') self.assertEqual(jsi.call_function('x'), [20, 20, 30, 40, 50])
def test_comments(self): 'Skipping: Not yet fully implemented' return jsi = JSInterpreter(''' function x() { var x = /* 1 + */ 2; var y = /* 30 * 40 */ 50; return x + y; } ''') self.assertEqual(jsi.call_function('x'), 52) jsi = JSInterpreter(''' function f() { var x = "/*"; var y = 1 /* comment */ + 2; return y; } ''') self.assertEqual(jsi.call_function('f'), 3)
def test_assignments(self): jsi = JSInterpreter('function f(){var x = 20; x = 30 + 1; return x;}') self.assertEqual(jsi.call_function('f'), 31) jsi = JSInterpreter('function f(){var x = 20; x += 30 + 1; return x;}') self.assertEqual(jsi.call_function('f'), 51) jsi = JSInterpreter('function f(){var x = 20; x -= 30 + 1; return x;}') self.assertEqual(jsi.call_function('f'), -11)
def test_basic(self): jsi = JSInterpreter('function x(){;}') self.assertEqual(jsi.call_function('x'), None) jsi = JSInterpreter('function x3(){return 42;}') self.assertEqual(jsi.call_function('x3'), 42) jsi = JSInterpreter('var x5 = function(){return 42;}') self.assertEqual(jsi.call_function('x5'), 42)
def test_operators(self): jsi = JSInterpreter('function f(){return 1 << 5;}') self.assertEqual(jsi.call_function('f'), 32) jsi = JSInterpreter('function f(){return 19 & 21;}') self.assertEqual(jsi.call_function('f'), 17) jsi = JSInterpreter('function f(){return 11 >> 2;}') self.assertEqual(jsi.call_function('f'), 2)
def test_for_loop_break(self): jsi = JSInterpreter(''' function x() { a=0; for (i=0; i-10; i++) { break; a++ } return a } ''') self.assertEqual(jsi.call_function('x'), 0)
def test_catch(self): jsi = JSInterpreter(''' function x() { try{throw 10} catch(e){return 5} } ''') self.assertEqual(jsi.call_function('x'), 5)
def test_basic(self): jsi = JSInterpreter('function x(){;}') self.assertEqual(jsi.call_function('x'), None) jsi = JSInterpreter('function x3(){return 42;}') self.assertEqual(jsi.call_function('x3'), 42) jsi = JSInterpreter('function x3(){42}') self.assertEqual(jsi.call_function('x3'), None) jsi = JSInterpreter('var x5 = function(){return 42;}') self.assertEqual(jsi.call_function('x5'), 42)
def test_empty_return(self): jsi = JSInterpreter('function f(){return; y()}') self.assertEqual(jsi.call_function('f'), None)
def test_calc(self): jsi = JSInterpreter('function x4(a){return 2*a+1;}') self.assertEqual(jsi.call_function('x4', 3), 7)
def test_return_function(self): jsi = JSInterpreter(''' function x() { return [1, function(){return 1}][1] } ''') self.assertEqual(jsi.call_function('x')([]), 1)
def test_parens(self): jsi = JSInterpreter('function f(){return (1) + (2) * ((( (( (((((3)))))) )) ));}') self.assertEqual(jsi.call_function('f'), 7) jsi = JSInterpreter('function f(){return (1 + 2) * 3;}') self.assertEqual(jsi.call_function('f'), 9)
def test_array_access(self): jsi = JSInterpreter('function f(){var x = [1,2,3]; x[0] = 4; x[0] = 5; x[2] = 7; return x;}') self.assertEqual(jsi.call_function('f'), [5, 2, 7])
def test_strange_chars(self): jsi = JSInterpreter('function $_xY1 ($_axY1) { var $_axY2 = $_axY1 + 1; return $_axY2; }') self.assertEqual(jsi.call_function('$_xY1', 20), 21)
def test_morespace(self): jsi = JSInterpreter('function x (a) { return 2 * a + 1 ; }') self.assertEqual(jsi.call_function('x', 3), 7) jsi = JSInterpreter('function f () { x = 2 ; return x; }') self.assertEqual(jsi.call_function('f'), 2)
def test_literal_list(self): jsi = JSInterpreter(''' function x() { return [1, 2, "asdf", [5, 6, 7]][3] } ''') self.assertEqual(jsi.call_function('x'), [5, 6, 7])
def test_void(self): jsi = JSInterpreter(''' function x() { return void 42; } ''') self.assertEqual(jsi.call_function('x'), None)
def n_sig(jscode, sig_input): funcname = YoutubeIE(FakeYDL())._extract_n_function_name(jscode) return JSInterpreter(jscode).call_function(funcname, sig_input)
def test_undefined(self): jsi = JSInterpreter(''' function x() { return undefined === undefined; } ''') self.assertTrue(jsi.call_function('x')) jsi = JSInterpreter(''' function x() { return undefined; } ''') self.assertIs(jsi.call_function('x'), JS_Undefined) jsi = JSInterpreter(''' function x() { let v; return v; } ''') self.assertIs(jsi.call_function('x'), JS_Undefined) jsi = JSInterpreter(''' function x() { return [undefined === undefined, undefined == undefined, undefined < undefined, undefined > undefined]; } ''') self.assertEqual(jsi.call_function('x'), [True, True, False, False]) jsi = JSInterpreter(''' function x() { return [undefined === 0, undefined == 0, undefined < 0, undefined > 0]; } ''') self.assertEqual(jsi.call_function('x'), [False, False, False, False]) jsi = JSInterpreter(''' function x() { return [undefined >= 0, undefined <= 0]; } ''') self.assertEqual(jsi.call_function('x'), [False, False]) jsi = JSInterpreter(''' function x() { return [undefined > null, undefined < null, undefined == null, undefined === null]; } ''') self.assertEqual(jsi.call_function('x'), [False, False, True, False]) jsi = JSInterpreter(''' function x() { return [undefined === null, undefined == null, undefined < null, undefined > null]; } ''') self.assertEqual(jsi.call_function('x'), [False, True, False, False]) jsi = JSInterpreter(''' function x() { let v; return [42+v, v+42, v**42, 42**v, 0**v]; } ''') for y in jsi.call_function('x'): self.assertTrue(math.isnan(y)) jsi = JSInterpreter(''' function x() { let v; return v**0; } ''') self.assertEqual(jsi.call_function('x'), 1) jsi = JSInterpreter(''' function x() { let v; return [v>42, v<=42, v&&42, 42&&v]; } ''') self.assertEqual(jsi.call_function('x'), [False, False, JS_Undefined, JS_Undefined]) jsi = JSInterpreter('function x(){return undefined ?? 42; }') self.assertEqual(jsi.call_function('x'), 42)
def test_for_loop_continue(self): jsi = JSInterpreter(''' function x() { a=0; for (i=0; i-10; i++) { continue; a++ } a } ''') self.assertEqual(jsi.call_function('x'), 0)
def test_object(self): jsi = JSInterpreter(''' function x() { return {}; } ''') self.assertEqual(jsi.call_function('x'), {}) jsi = JSInterpreter(''' function x() { let a = {m1: 42, m2: 0 }; return [a["m1"], a.m2]; } ''') self.assertEqual(jsi.call_function('x'), [42, 0]) jsi = JSInterpreter(''' function x() { let a; return a?.qq; } ''') self.assertIs(jsi.call_function('x'), JS_Undefined) jsi = JSInterpreter(''' function x() { let a = {m1: 42, m2: 0 }; return a?.qq; } ''') self.assertIs(jsi.call_function('x'), JS_Undefined)
def test_for_loop(self): # function x() { a=0; for (i=0; i-10; i++) {a++} a } jsi = JSInterpreter(''' function x() { a=0; for (i=0; i-10; i++) {a++} return a } ''') self.assertEqual(jsi.call_function('x'), 10)
def test_comma(self): jsi = JSInterpreter(''' function x() { a=5; a -= 1, a+=3; return a } ''') self.assertEqual(jsi.call_function('x'), 7)